Skip to main content
Powered by ShareScore

Find research datasets worth reusing

Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.

685

datasets available to search

ShareScore release 0.7.1

Reset

Dataset results

685 results for “biotic”

Learn how ShareScore rates datasets ↗
zenodo40/100

Fig. 12 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 12. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, posterior ventro-lateral plates, left (A) and right (B, C) of the trunk armour. A. IG KSC 155/4 in ventral (A1) and lateral (A2) views. B. IG KSC 155/16 in ventral view. C. IG KSC 155/78 in ventral view.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 14 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 14. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), reconstruction of the head, the trunk armour and the pectoral fins in ventral view, based on IG KSC 155/10-1, IG KSC 155/10-2, and IG KSC 155/10- 3. Abbreviations: AVL, anterior ventro-lateral plate; Cv1–4, ventral central plate 1 to 4; Ifg, inferognathal plate; La, lateral plate; Ml2–5, lateral marginal plates 2 to 5; Mm4, mesial marginal plate 4; MV, median ventral plate; Prl, prelateral plate; Prm, premedian plate; PVL, posterior ventro-lateral plate; SM, semilunar plate; SMg, submarginal plate; T, terminal plate.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 8 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 8. Reconstruction of the head shield of antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), based on partial head shield (IG KSC 71/1-87), left (IG KSC 155/15), and right (IG KSC 155/65) lateral plates. Abbreviations: cir, semicircular pit-line groove; csl, central sensory line groove; d.end, opening of canal for endolymphatic duct; ifc1, principal section of infraorbital sensory line; ifc2, branch of infraorbital sensory line diverging on La; La, lateral plate; mp, middle pit-line groove; Nu, nuchal plate; Pmg, postmarginal plate; Pn, paranuchal plate; Pp, postpineal plate; Prm, premedian plate; prh, preorbital recess of head shield; soc, anterior section of the supraorbital sensory line; socc, supraoccipital cross-commissural pit-line groove.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 7 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 7. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), paranuchal (A) and postpineal and nuchal (B), plates of the head shield. A. IG KSC 155/117 in dorsal (A1) and visceral (A2) views. B. Articulated plates IG KSC 155/154 in dorsal (B1) and visceral (B2) views.Abbreviations: cr.o, median occipital crest of head shield; cr.pm, paramarginal crest of head shield; cr.pto, postorbital crest of head shield; cr.tv, transverse nuchal crest of head shield; csl, central sensory line groove; d.end, opening of canal for endolymphatic duct; g, paired pits on Pp; ifc1, principal section of infraorbital sensory line; mp, middle pit-line groove; nm, obtected nuchal area of head shield; Nu, nuchal plate; ood, otico-occipital depression of head shield; Pp, postpineal plate; socc, supraoccipital cross-commissural pit-line groove; sot, supraotic thickening of head shield.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 5 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 5. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), lateral (A–G, I) and premedian (H) plates of the head shield. A. IG KSC 155/15 in dorsal view. B. IG KSC 155/67 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/129 in dorsal view. D. IG KSC 155/74 in dorsal view. E. IG KSC 155/65 in dorsal view. F. IG KSC 155/66 in dorsal (F1) and visceral (F2) views. G. IG KSC 155/69 in dorsal view. H. IG KSC 155/114 in dorsal view. I. IG KSC 155/64 in dorsal view. Abbreviations: a1Sm and a2Sm, anterior and posterior attachment areas on lateral plate for submarginal plate; a.Prl, attachment area on lateral plate for prelateral plate; cir, semicircular pit-line groove; csl, central sensory line groove; ifc1, principal section of infraorbital sensory line; ifc2, branch of infraorbital sensory line diverging on La; nprl, prelateral notch of head shield; p, lateral pit of head shield; prh, preorbital recess of head shield; pr.po, antero-lateral corner of otico-occipital depression; soc, anterior section of the supraorbital sensory line; spg, spiracular groove of head shield.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 3 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 3. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, separate plates and parts of articulated head shields. A. Articulated Nu, left Pn and left La plates IG KSC 155/90 in dorsal view. B. Disarticulated plates of the head shield IG KSC 155/150 in dorsal view. C. Part of articulated head shield IG KSC 155/162 in dorsal view. D. Imprint of the ventral wall of trunk armour and some skeletal elements of the head armour IG KSC 155/10-3 in ventral view showing suborbital and infragnathal bones. Abbreviations: AVL, anterior ventro-lateral plate; cir, semicircular pit-line groove; csl, central sensory line groove; d.end, opening of canal for endolymphatic duct; ifc1, principal section of infraorbital sensory line; IG, inferognathal; La, lateral plate; Nu, nuchal plate; mp, middle pit-line groove; Pn, paranuchal plate; Pp, postpineal plate; Prm, premedian plate; SO, suborbital plate; socc, supraoccipital cross-commissural pit-line groove.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 4 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 4. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, lateral A–G), premedian (H), and left postmarginal (I) plates of the head shield. A. IG KSC 155/15 in dorsal view. B. IG KSC 155/67 in dorsal (B1) and visceral B2) views. C. IG KSC 155/129 in dorsal view. D. IG KSC 155/65 in visceral (D1) and dorsal (D2) views. E. IG KSC 155/66 in dorsal (E1), right lateral (E2), and visceral (E3) views. F. IG KSC 155/69 in dorsal view. G. IG KSC 155/64 in dorsal view. H. IG KSC 155/114 in dorsal (H1) and anterior (H2) views.. Plate disconnected from the partial head shield IG KSC 155/161, in dorsal view.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 2 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 2. Lithology and stratigraphy of the Sosnogorsk locality. "Fish-dolomite", bed No. 40 is located about 8 m above the base of the section. Abbreviations: D3f, Upper Devonian, Frasnian; D3fm, Upper Devonian, Famennian.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 1 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 1. Geographical and geological setting of the type locality of Bothriolepis leptocheira jeremejevi (Rohon, 1900): sketch-maps of Russia (A) and Komi Republic (B) and geological map of Ukhta-Sosnogorsk area, from Yukhtanov et al. (2008), amended (C). The Natural Geological Monument Sosnovskiy" (Sosnogorsk fossil site) is marked by the black square. Abbreviations: D3f1, Upper Devonian, lower Frasnian; D3f2, Upper Devonian, middle Frasnian; D3f3, Upper Devonian, upper Frasnian; D3fm1, Upper Devonian, lower Famennian; C1, Carboniferous, Mississippian; J2, Middle Jurassic.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 11 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 11. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, partial ventral wall (A, B), anterior ventro-lateral (AVL) (C, D, left; E, right), and median ventral (F–J) plates of the trunk armour, and elements of pectoral fin. A. Impression of partial ventral wall of the trunk armour, inferognathals, and suborbitals IG KSC 155/10-2 in ventral view. B. Partial ventral wall of the trunk armour with articulated pectoral fin armour IG KSC 155/10-1 in ventral view. C. IG KSC 155/151 (C1) and enlargened part of the ventral lamina with pathologies (C2, arrows). D. IG KSC 155/122 in ventral view. E. IG KSC 155/123 in ventral view. F. IG KSC 155/104 with the bite mark (arrow) → in ventral (F1) and visceral (F2) views. G. IG KSC 155/76 in ventral view. H. IG KSC 155/77 in ventral view. I. IG KSC 155/133 in ventral view. J. IG KSC 155/106 in ventral view. Abbreviations: AVL, anterior ventro-lateral plate; Cd1–2, dorsal central plates 1 and 2; Cv1, ventral central plate 1; cit1, crista transversalis interna anterior; cit2, transverse thickening on the visceral surface of AVL; ds, distal segment of the pectoral fin armour; Ifg, inferognathal; Ml2, lateral marginal plate 2; Mm2, mesial marginal plate 2; MV, median ventral plate; PVL, posterior ventro-lateral plate; SO, suborbital plate.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 6 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 6. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, postpineal A–C, E, G), nuchal (D–G, I, K–M), and paranuchal (H, J, L, M) plates of the head shield. A. IG KSC 155/54-2, disconnected from the Nu IG KSC 155/54-1, in dorsal (A1) and visceral (A2) views. B. IG KSC 155/146 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/155 in dorsal (C1) and visceral C2) views. D. IG KSC 155/58 in dorsal view. E. Articulated plates IG KSC 155/118 in dorsal view. F. IG KSC 155/53 in dorsal (F1), visceral (F2), and posterior (F3) views. G. Articulated plates IG KSC 155/154 in dorsal (G1) and visceral (G2) views. H. IG KSC 155/55 in dorsal (H1) and visceral (H2) views. I. IG KSC 155/54-1 from the same individual as plate in A, in dorsal view. J. IG KSC 155/119 in dorsal view. K. IG KSC 155/56 in dorsal view. L. IG KSC 155/117 in visceral (L1) and dorsal (L2) views. M. IG KSC 155/125 in dorsal view.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Fig. 13 in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

Fig. 13. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, plates of the pectoral fin armour. A. Left Cv1 plate IG 155/6 in visceral (A1) and ventral (A2) views. B. Right Cv1 plate IG KSC 155/134 in ventral view. C. Left Ml2 plate IG KSC 155/149 in ventral view. D. Right Ml2 plate IG 155/137 in dorsal (D1) and ventral (D2) views. E. Right distal segment of the pectoral fin armour IG KSC 155/21 in dorsal (E1) and ventral (E2) views. F. Mm1 plate IG KSC 155/85 in mesial view. Abbreviations: Cd3–5, dorsal central plates 3 to 5; Cv4, ventral central plate 4; Ml4–5, lateral marginal plates 4 and 5; Mm4–6, mesial marginal plates 4 to 6; T, terminal plate.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Data from: Abiotic and biotic drivers on tadpoles in seasonal rock pools of Western Ghats rock outcrops, India

<p>We assessed the influence of abiotic (pool size, monsoon progression) and biotic (predator abundances) factors on occurrence and abundance of three species of tadpoles by periodically monitoring rock pools in lateritic plateaus. The dataset generated from this study is published here.&nbsp;</p> <p>Species Coverage: <em>Euphlyctis jaladhara, Microhyla nilphamariensis, Polypedates maculatus</em>; four predator groups (Pisaurid Spiders, Crabs, Water Beetles, Dragonfly Larvae)</p> <p>Geographic Coverage: Devi Hasol plateu of Ratnagiri District, Maharashtra State, India. (16&deg;44'&ndash;16&deg;45'N; 73&deg;25&ndash;73&deg;27'E)</p> <p>Temporal Coverage: July, August, September (2022).</p> <p>&nbsp;</p> <p><strong>Methods:</strong></p> <p>Nighttime rock pool surveys were conducted for tadpoles of three species (<em>Euphlyctis jaladhara, Microhyla nilphamariensis, Polypedates maculatus</em>). Pools were monitored eight times during the study period between 1900&ndash;2300 hr, usually in clear weather, barring occasional rain incidences. The pool water was clear during all the observation occasions. For large (&gt;1003 cm<sup>3</sup>) pools, the observer gently walked along the bank and scanned the pool to record all animals. Care was taken not to recount the same schools of tadpoles, and a red light was used while approaching the pool to avoid light disturbance. The observer enumerated tadpoles of the three species and their potential predators (fishing spiders, crabs, dragonfly larvae, and water beetles) by counting them using head and hand-held torch lights. Following microhabitat variables were recorded at four occasions: Pool maximum length and width (cm), water depth (cm) at three points, humus cover (%), submerged vegetation cover (%), and edge vegetation cover (%). The percentage covers of vegetation and humus were visually estimated.&nbsp;</p> <p>&nbsp;</p> <p><strong>Funding:</strong></p> <ol> <li>On the Edge (UK)</li> <li>The Habitats Trust (India)</li> <li>The Bombay Environmental Action Group (India)</li> </ol>

opencc-by-nc-4.0Apr 2024View details →
zenodo40/100

Global Biotic Interactions: Elton Dataset Cache for Collections of National Museum of Natural History, Smithsonian Institution

<p>Global Biotic Interactions: Elton Dataset Cache for Collections of National Museum of Natural History, Smithsonian Institution</p> <p>The intended use of this archive/cache is to allow for offline-enabled access versions of existing species interaction datasets. The program &quot;Elton&quot; (https://doi.org/10.5281/zenodo.998263) was used to populate the content of elton-datasets.tar.gz . The same program can be used to extract information from the cache archive also. Global Biotic Interactions (https://globalbioticinteractions.org,&nbsp;https://doi.org/10.1016/j.ecoinf.2014.08.005) also uses these archives to create derived species interaction data archives, search indexes&nbsp;and APIs.</p> <p>Please note that due to size considerations, offline-enabled access to an elton dataset cache of iNaturalist interaction data has been excluded from this publications and moved into a separate Zenodo publication at https://doi.org/10.5281/zenodo.3950546 .</p> <p>Contents<br> --------</p> <p>README:<br> this file</p> <p>elton-datasets.tar.gz:<br> versioned archive with species interaction datasets</p> <p>elton-datasets.tar.sha256:<br> content signature of elton-datasets.tar</p> <p>elton-datasets.tsv:<br> list of included datasets</p> <p>elton.jar:<br> commandline program to help access the species interaction datasets</p> <p>Usage<br> -----</p> <p>To install, extract elton-datasets.tar.gz into a directory of choice using:</p> <p>tar xfz elton-dataset.tar.gz</p> <p>To use, download elton.jar included&nbsp;this publication and execute the following to get a list of available datasets:</p> <p>java -Xmx4G -jar elton.jar datasets</p> <p>on a system that has java v8+ installed.</p> <p>If all goes well, you should be able to regenerate the included file elton-dataset.tsv .</p> <p>For more information on how to use elton.jar, execute:</p> <p>java -jar elton.jar usage</p> <p>or visit https://github.com/globalbioticinteractions/elton for more available commands.</p> <p>Alternatively, without using Elton, you can access the data by inspecting the access.tsv files in the various directories of the datasets directory.</p> <p>When using these datasets in a publication or product, please cite the *original* data providers and publications. You can find the citations in the data.</p> <p>Included datasets:</p> <p>globalbioticinteractions/usnm&nbsp;&nbsp; &nbsp;National Museum of Natural History, Smithsonian Institution IPT RSS Feed&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/usnm/archive/44794f5e68adb768de09b44692d7bd2163968563.zip&nbsp;&nbsp; &nbsp;2021-11-13T03:12:33.778Z&nbsp;&nbsp; &nbsp;686cacf55bbd48785d264d1bc7ff187f36a77faa92e963368f36617ab732304e&nbsp;&nbsp; &nbsp;0.12.2</p> <p>Associated content ids:</p> <p>hash://sha256/a6a5c330c7e7e803ba96acafdb854e6b4d93d763a700d921cf416ec92b1521a5<br> hash://sha256/da5fde39c0048886b085b17b001b10fc69d12e259fee46e0252f0e90b0a5e988<br> hash://sha256/f7287f049bc1114619e538e42ea728dbdcaf489790f71eb1bedd55ff5396dd7f<br> hash://sha256/68bd01e004e6b0bfbde925d1f5449b8dc50f4b01ed6d3534d0a3bc01875149fd<br> hash://sha256/57901cccfa745ca64a60f5f9dfc3c2a25c0a6cd57d676cea8a60e2d605bd1828<br> hash://sha256/50cdd572f1cc66976591d9e718592681dde9e0f7139d3802738d01abd22e5729<br> hash://sha256/e176d4444d1664d486226764eeb00c5f31d7332a5ea0f5cb2947e6892e0e4e64<br> hash://sha256/edb5d35093b104ffe9896b3c916662b812ccdc68bff2e2997777695b9895afba<br> hash://sha256/f395efbd0f8665a0aec8a464c97f1b06a157494cae699cdb734f4fb48c5a6a80<br> hash://sha256/bb86e0c47f7c016050213c7c6f508ed8f6618f377ceb6deef5775c6a67bfa0a7<br> hash://sha256/7fb429234693ed8840c80124eb13ed86a3659906453471db6d9dd51f6689f55e<br> hash://sha256/954f5186ccf95189132a03e79f5c14258633b4a00d03a70d02fdd175d87945a9<br> hash://sha256/e895dbe606fa799f089c76992c4023f6b2b7f82533125a496f172f638a9fadc4<br> hash://sha256/5fd1aa09aaab948a69bf42edc3d7170e83827d61b70b35947e23d45b82444624<br> hash://sha256/84055a44552f2ae3f7701a89827e81969c7274688704cf8b223ba3106774d0e0<br> hash://sha256/e41118c8f304b6adc08fa1990288f0ff858d08a7ec49d504290e810931db7a77<br> hash://sha256/20b1f7def8196f19563949c53e9e64d87ccff8b3a73005d7d7b61351ca7ca549<br> hash://sha256/b0b48353b1c0662664809804806eaed117fd021be123b3c79ebc81af8d41d7dc<br> hash://sha256/f64b4162f97279a22a89ce0ab8d316733014d7ac1578efa3f00c8840da45b55d<br> hash://sha256/3a77cd41a34f5e5449a93189abfafd895d1261c56f076f59af7beefcbcb11c96<br> hash://sha256/6ad33ae1559e8b381fb78999f17b785a3742b495345e55b6338df97c372c187f<br> hash://sha256/901ac1dbe725bf01e3e716dd1e84fa85e8bf95b0edde2a167b0f38e0cf64d21d<br> hash://sha256/90ae02177c9e69227735e2ad99baf9ccb5aacead3532584f31534308c98e8a01<br> hash://sha256/1e8d2e4a1e9ff9827b27638a633a13d5928bffee7123f562ab84a2de47a676f4<br> hash://sha256/5567ee9af737414184593942ef8e757611ec6dfaf4b753d78d091d327b5d07ca<br> hash://sha256/f52eb5fe006454d065c0dc44dae73361414710dfe4abab1af5f87573b854811c<br> hash://sha256/09be8eaaf048f4fe699d4fa65950eea1da809c8348e023e46b50d7620c346b5b<br> hash://sha256/696f9b2aba8218dd9163f3d3c3801c14f4393665538571a7e32681d942019425<br> hash://sha256/211ec5a7061f501792932cd1eca40a35a48520a93524619fd5c84c865f97a7da<br> hash://sha256/9a3a4291fa91a8aeee5f7dc60e70c0621835fb95215913830a94bc0ba69219bc<br> hash://sha256/304fc7d01305215e86ba1873eefa4c047b244a42b6109402acaf6cdafdab2649<br> hash://sha256/ae32c5a32d51cbbed9572afbfc581fe9d04db5b44b6c47175eb31e0bfc8d75bf<br> hash://sha256/49704e739968329e14e037ac470ae4675ed7305bf4b5d31713e2cfdd11fab923<br> hash://sha256/d5cf8040cb68b51132554335a3394625b0fe93ee999396c634890cabd99a52b1<br> hash://sha256/ec9411b62802566074c901aec707c77864fe92ecef43c96998947e93463e2041<br> hash://sha256/9c6c4c4e65211805d5313fca8db474c259bb7f78ae8c913c22f363894093ea97<br> hash://sha256/c802e1aac3c3f5da9068edf4ae600aa4bb615ef1c552df2b20ee11fdbc55e11d<br> hash://sha256/d27dd70e25123cc945da56ecaf5848ded9355dce4ae868670d999bb34cacda44<br> hash://sha256/c8521e865f3254067ba00452d85f88efd4d5bd802da96bb02d3e00b82e310d84<br> hash://sha256/0f4de4a5ebc5e9fd9c72cd9b7351b3eb07c754bb2fe4395feef5668c1cf39e1a<br> hash://sha256/51cf7d15ab3de806190f389dbf3267be0e6d97e9783cef976b84891c9c74675e<br> hash://sha256/dfbe7f244eb0f4a18dbe2c8b5d03449dc3467dbfa60bf9fc7c1f42e0d757e7d6<br> hash://sha256/40c505c041986ebbf65fa18fb52e593fcc946518b095a37e5bfb54f41d211f8f<br> hash://sha256/d6117367441d244242905d3af1e597b9997309407f6aef2501cc91e773ad25b3<br> hash://sha256/45595ccca2a29b1b2d04238fc793b21a3ac7868e3918bccb12efbdbdc7896dd4<br> hash://sha256/549676fb3188292c142c38fc959c90556f9b79d904a3025f4ed58043f2a0365d<br> hash://sha256/e6ad88f45b200c36bb765cf0d743464c2526a26aefa5ad09565fdf2c88cbd5ca<br> hash://sha256/65210edad5ca5e633c818337b60417931b199c58c1e779e579a13d116dc5a224<br> hash://sha256/c7d32c3ff9329b748709c7992ea556d1874e8d205664e01936c260b8b80c700c<br> hash://sha256/65dce95a770b0439dd8ff1bc834f567b7c07ecfed70d8ebb6181f0eee6113d71<br> hash://sha256/52470199203c8b84cfa95a6e629c7f816fcd2c64c1d405bb59d2e1c0883f93ab<br> hash://sha256/2a71fec079b51b6aa9663e784c876fa6cd324bfc5a9b6f123ba7a21b28a4c55b<br> hash://sha256/4bb9cfee8572addb3e77175d4c961432f989abeac11f4d2735a68705b1b01cf3<br> hash://sha256/b00ebcb02f6c9003d35acaca8db452fb8be77b5def2203e9a2a6c860b3ef9ed7<br> hash://sha256/0095d0c426ad1efc5eaa840070552d0be29ff0603e092d99206a55cc410e0994<br> hash://sha256/45d139640c524e42159c10f7827292e558387b561729ed8dac50f0714cd9409d<br> hash://sha256/79c92a0e43f8c99062320e74f128e022ce58fe72b59e50b5a90a95b566e4b436<br> hash://sha256/5472cb9678f94db6ff021a310ccfea3fdbcb640080e2adef14cace6e5822191a<br> hash://sha256/554028ff7e8e9012f8c24e1950816eb03b224f47cba2262719fe6e8a65e6c191<br> hash://sha256/1c387dece95d6bdf5ff2b28f6ae455608836b5d14b49939f236a23bf3a55f746<br> hash://sha256/d5a28b5c0ebc9647816f3b97b7344ab52437382ce04c1ede87275d4d7d178a80<br> hash://sha256/39f762bac6c5f38528e7748872f2b1d8dd6891ff97dae20cb975669f8d3fb1ae<br> hash://sha256/d3f271c662dd9c3e1202ce6d12eea6292d94739c934f812c659ab786d6b4fcc4<br> hash://sha256/b7af838560871dec29dd540b0ec1510a9c24cd0739a6bfdbba2d837de95da476<br> hash://sha256/0ae74cf01c74bca683e324de6349580bd55a56cf4199ca2fbc4ebbbff7e4dc44<br> hash://sha256/5cfc5c4b73104beaca2d7ee8b8b50990fb9f9ca8332f83d4068cc1f6c15d1cb5<br> hash://sha256/c05f24a393426954b7367fd178e2800f43dcc4d55334fa5162cf2ada58192ea9<br> hash://sha256/82fccc2c7f0d2e5a5c530e5b7623c617495f1519d9f6245181fe18745f5716de<br> hash://sha256/14a8bc64c8b2ab06b2229bd1d2bd0e30c64d4ba794ead82438b2b4848e207fb6<br> hash://sha256/cedb2e7c841e1ee2282927fe1b481f7584af71552d19abe86660001f5ccfa627<br> hash://sha256/cca078b3de382fb54a95bcbe692bd1efcf85256ff0e8974b4188a1260bbdf1a8<br> hash://sha256/a40a4bd215207b12563c8ce8efa71b5de69de02674bf03cad9709745921d5591<br> hash://sha256/1a71cfd7e0c6fd193702f177c9a2a150d239feb8e2e50ede391aeb7f789adc98<br> hash://sha256/cce187f1733fa2a994e322a7451ae5de8d68c388d0f6b56dcd24007c6d062ec5<br> hash://sha256/9f32be8709868086cb3b06a7edc6a162317db93366d7acdee7fb485548ca30df<br> hash://sha256/920dc53ca56c8d4cb3cc0f18b86a85199aefe668023b4093675b6c14e7ef1a49<br> hash://sha256/62f9907c90cbfe758296dc69594780b5dfd4adedd55118fadd975dca35f0cc41<br> hash://sha256/157923882d48dc52ca97d77f0f29c4a83e8540bf909c17bfebfa0e4995ad7ee8<br> hash://sha256/99bf044d8dafbae8968c226e9c073f8b866454f8cd7dec92f9abb4db1eb6cebc<br> hash://sha256/cfe2dbd5ee77896e0b2fcead9b50585d6e9528d043ea70afd478f7d8d5eb653e<br> hash://sha256/2e5d9146f1798654cb0c7ae98ff55408eaf29a58f81675d7c8911193092ab9a6<br> hash://sha256/ab733e9b907ce3f9525ecc52fc13e7e98c644784472aba4149cfdaa8c351250f<br> hash://sha256/1a37faf516849590e71e335fc4afc225b392347ebe2a862c433a5b762eb3b45f<br> hash://sha256/a64b11f1ee6f0b9dc0897b3ac1e58afca0da785faa02ddee1681a5cc83cfd70e<br> hash://sha256/f67ff3c90bdd727657091d491d3522b9e5f14ed0d47c5d74f17e8bc2e4beadf8<br> hash://sha256/ea83a5dd167e01cd75e2545a310bcf0597897afd83a00b939c841e4e8c68c208<br> hash://sha256/a66348ff1b5d381c56dbacf12000b3ad139431777c869f328dd9d2a14465a97c<br> hash://sha256/b2e1c6b03a63194fef780d7d533d3fe653689e616fa1ab9fd7d16ffbe9f499bf<br> hash://sha256/ef9a2d99028d4831f6954dd03f437e0fe2204e84c9a30be6ad34f992dee874b3<br> hash://sha256/183aa34e6425d13f44311911ed6dd3352667a48c9e99181260305952fc1f02a6<br> hash://sha256/f084d4b87de712ce6323cc8f7217a67ab6e1dbeab8f48ab6f96275a0441391d6<br> hash://sha256/f2fb9708b8642a09f35bb59b23b7d30d68a7a7f1b9d2c6aa7dae9a6816f5cd89<br> hash://sha256/511b0b666f9adff8e0a6b7ff13cbe3a3ca6fe2c881a1e2585cafdb5cd708520f<br> hash://sha256/854827a1c3cbbac171718f69a937b39bee53f2245bd518c53c825a6865be5d70<br> hash://sha256/b07212c2cfcc405b845c4fb8269bbb34cca127d26d5eb0a17006c478767e0c74<br> hash://sha256/40a668adaecc9968259d88bcff4861b4d517194fd6baece4a687761d949eea39<br> hash://sha256/c1b3be06128b2a85815262665405b9e7a8116bff972fe6e059833c909cc76b7c<br> hash://sha256/b2f826a23d2077c93c1463be5e9edead4fe03a30700b8135bca0d1164a77957d<br> hash://sha256/d71a5cc1eda721d6f3d8731b5462fb762b7e5c072784369ca440f2d20b9878df<br> hash://sha256/90beef30738a466d5a42067801b88f655568596ed37585d80386069cc2dc7063<br> hash://sha256/10ef6f2c7661d21308b5f24b226b5347fc098d1c32dbd3bf20310d13738ec50c<br> hash://sha256/6f2d511280f75dfe9d707d924ab339a4f0659c90216f442c06a2fa537f1c6524<br> hash://sha256/bdf14ed1bf0e06a40e24e03f4cc5cc9bc4f2cd534ae4c145036e18ab977b7096<br> hash://sha256/0ce4980a3059ee5a5b847b6114c4e75e2d8e81b66b89ef6d4e1138e9b6bb9917<br> hash://sha256/e313eae169db624d81284156a75696e1c19153e414e61ed99426dd7f470e071a<br> hash://sha256/d4837e4917b1c951ac9e8dee848b8e5c5b671ab7e9cdbe7e602cdfc245ea1509<br> hash://sha256/0721fb7e406cf701d637cf2d2a6a5358b10ed160b7a70bd3c53641aa770fe3e9<br> hash://sha256/2367bd2c74a3be60de21bd1d22c865569d7a8ad7efb29a0b271314af2c7d96f8<br> hash://sha256/b406a096b3c29e289d4ff869b588d2099c0480b8e1e0d5ecbeb9bda4484bc41c<br> hash://sha256/6687dd5a35d21adb821ba418d1b1038aa85d6e189c53f9b517609abf1f300c6a<br> hash://sha256/21139673c1c661697c67e4eb7054c06cf4cba0d194e201f3b7c4ba4ccffaf53e<br> hash://sha256/4084b8dfdeab02b97b37a09f78b2fd544155df9f69f9fee8f9cc533ae89efb18<br> hash://sha256/686cacf55bbd48785d264d1bc7ff187f36a77faa92e963368f36617ab732304e<br> hash://sha256/6597fda5e202501d5dbd747f0fdadf257c522d81f17c5fb89c8160dfce57a597<br> hash://sha256/de397cfbc7bb473a554a326c839b9403938c8ee3c567c69849f93497b7b4b0b4<br> hash://sha256/c6da55c714cb8686b967ba7cf2c10ecdd89f1e33e9d60620e559c164e80bcf5b<br> hash://sha256/60c10aea7c4dfdfd81e078541a271ceb379ab8605af819f90cd6882e8712d12e<br> hash://sha256/8e74b7f56d5fd6887beefadbba131a8ecbc3286207bec689882fce521f8e95ae<br> hash://sha256/4acdaa65ffca370296317f11ec6074c7de899c05e656344a2887364d6320a379<br> hash://sha256/1349bc4f8ddf3224bfecc1e2d646a4f7013cb62817ac2b38720e39d9d54a4259</p> <p>&nbsp;</p>

opencc-zeroNov 2021View details →
zenodo40/100

Global Biotic Interactions: Elton Dataset Cache

<p>Global Biotic Interactions: Elton Dataset Cache</p> <p>The intended use of this archive/cache is to allow for offline-enabled access versions of existing species interaction datasets. The program &quot;Elton&quot; (https://doi.org/10.5281/zenodo.998263) was used to populate the content of elton-datasets.tar.gz . The same program can be used to extract information from the cache archive also. Global Biotic Interactions (https://globalbioticinteractions.org,&nbsp;https://doi.org/10.1016/j.ecoinf.2014.08.005) also uses these archives to create derived species interaction data archives, search indexes&nbsp;and APIs.</p> <p>Please note that due to size considerations, offline-enabled access to an elton dataset cache of iNaturalist interaction data has been excluded from this publications and moved into a separate Zenodo publication at https://doi.org/10.5281/zenodo.3950546 .</p> <p>Contents<br> --------</p> <p>README:<br> this file</p> <p>elton-datasets.tar.gz:<br> versioned archive with species interaction datasets</p> <p>elton-datasets.tar.sha256:<br> content signature of elton-datasets.tar</p> <p>elton-datasets.tsv:<br> list of included datasets</p> <p>elton.jar:<br> commandline program to help access the species interaction datasets</p> <p>Usage<br> -----</p> <p>To install, extract elton-datasets.tar.gz into a directory of choice using:</p> <p>tar xfz elton-dataset.tar.gz</p> <p>To use, download elton.jar included&nbsp;this publication and execute the following to get a list of available datasets:</p> <p>java -Xmx4G -jar elton.jar datasets</p> <p>on a system that has java v8+ installed.</p> <p>If all goes well, you should be able to regenerate the included file elton-dataset.tsv .</p> <p>For more information on how to use elton.jar, execute:</p> <p>java -jar elton.jar usage</p> <p>or visit https://github.com/globalbioticinteractions/elton for more available commands.</p> <p>Alternatively, without using Elton, you can access the data by inspecting the access.tsv files in the various directories of the datasets directory.</p> <p>When using these datasets in a publication or product, please cite the *original* data providers and publications. You can find the citations in the data.</p> <p>Included datasets:</p> <p>AgentschapPlantentuinMeise/ashForestInteractions&nbsp;&nbsp; &nbsp;Groom, Q.J., Maarten De Groot, M. &amp; Marčiulynienė, D. (2020) Species interation data manually extracted from literature for species .&nbsp;&nbsp; &nbsp;https://github.com/AgentschapPlantentuinMeise/ashForestInteractions/archive/0a73fdc7a424a52ec8398cd153e9fb8b5f465eb2.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:10:59.455Z&nbsp;&nbsp; &nbsp;fa9cc04c03589a97e2047d534f3e7ba9c8f02805e92d396c1b640b3344a110be&nbsp;&nbsp; &nbsp;0.12.2<br> BDMYRepository/Echino-Interactions&nbsp;&nbsp; &nbsp;Soleto-Casas RC and Sim&otilde;es N (2020). Parasitic and commensal invertebrates of echinoderms from American Tropical And Subtropical Atlantic manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3742346/files/BDMYRepository/Echino-Interactions-V3.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:17.748Z&nbsp;&nbsp; &nbsp;888e5165881b5d3533fc1502300f21d3421abf0af6ccc2bc06b2c90f6b9a58f7&nbsp;&nbsp; &nbsp;0.12.2<br> BDMYRepository/Paguroidea-Mollusca-Interactions&nbsp;&nbsp; &nbsp;Cervantes-Campero G and Sim&otilde;es N (2020). Use of shells (Mollusca) by hermit crabs (Paguroidea) from the Southern Gulf of Mexico and the Caribbean Sea.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3901657/files/BDMYRepository/Paguroidea-Mollusca-Interactions-1.1.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:25.778Z&nbsp;&nbsp; &nbsp;d35f79522c66505bcd1b676c9c39c70725f195b64434568f90b0ef2d82956e56&nbsp;&nbsp; &nbsp;0.12.2<br> BDMYRepository/Sponge_Interactions&nbsp;&nbsp; &nbsp;P&eacute;rez-Botello A M and Sim&otilde;es N (2019). Sponge-dwelling fauna from the Gulf of Mexico and the Caribbean sea a manually extracted from literature. V2.0&nbsp;&nbsp; &nbsp;https://zenodo.org/record/4544355/files/BDMYRepository/Sponge_Interactions-2.06.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:34.611Z&nbsp;&nbsp; &nbsp;29b599e9cc46659381c45365dc9dc5d8e2f2490f6eb379ace41b7ada667c9f53&nbsp;&nbsp; &nbsp;0.12.2<br> Big-Bee-Network/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, K., Van Wagner, J., Behm, R., Brown, Z., Tan, E., &amp; Liu, K. (2020). BID: A project to share biotic interaction and ecological trait data about bees (Hymenoptera: Anthophila). UC Santa Barbara: Cheadle Center for Biodiversity and Ecological Restoration. Retrieved from https://escholarship.org/uc/item/1g21k7bf&nbsp;&nbsp; &nbsp;https://github.com/Big-Bee-Network/bee-interaction-database/archive/99659e611eaf6594d11f913d18eabae51ff09bef.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:56.872Z&nbsp;&nbsp; &nbsp;02873ad486861456acddd80ac444cc7e8828b7eae1985ca11e5c8cbb26ce966e&nbsp;&nbsp; &nbsp;0.12.2<br> CALeDNA/Klamath-mountains&nbsp;&nbsp; &nbsp;Genus level interactions from a metagenomic analysis of eDNA samples from the Klamath mountains&nbsp;&nbsp; &nbsp;https://github.com/CALeDNA/Klamath-mountains/archive/2a885acccb9c7d8f0f368044d9ba71d74c309450.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:03.156Z&nbsp;&nbsp; &nbsp;8bdedeb77ef6ec5be27937768adaf20d48671be636bffb79eb9d278d8bb666ed&nbsp;&nbsp; &nbsp;0.12.2<br> EMTuckerLabUMMZ/ummzi&nbsp;&nbsp; &nbsp;University of Michigan Museum of Zoology Insect Division. Full Database Export 2020-11-20 provided by Erika Tucker and Barry Oconner.&nbsp;&nbsp; &nbsp;https://github.com/EMTuckerLabUMMZ/ummzi/archive/6731357a377e9c2748fc931faa2ff3dc0ce3ea7a.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:53.239Z&nbsp;&nbsp; &nbsp;2c8c0ec09c6b0509882ad2d98a8a1ee1d1ea870c3ab2e7d69a0486f2e4643b01&nbsp;&nbsp; &nbsp;0.12.2<br> EOL/pseudonitzchia&nbsp;&nbsp; &nbsp;A. Thessen. 2014. Species associations extracted from EOL text data objects via text mining.&nbsp;&nbsp; &nbsp;https://github.com/EOL/pseudonitzchia/archive/e5838965a186fba4b7215cd0d179c4526773bad5.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:06.961Z&nbsp;&nbsp; &nbsp;c68c9950743e245a54937e84a725ea945f272eb271392b762a2da00577e44db8&nbsp;&nbsp; &nbsp;0.12.2<br> Extended-Bee-Network/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, K., Van Wagner, J., Behm, R., Brown, Z., Tan, E., &amp; Liu, K. (2020). BID: A project to share biotic interaction and ecological trait data about bees (Hymenoptera: Anthophila). UC Santa Barbara: Cheadle Center for Biodiversity and Ecological Restoration. Retrieved from https://escholarship.org/uc/item/1g21k7bf&nbsp;&nbsp; &nbsp;https://github.com/Extended-Bee-Network/bee-interaction-database/archive/99659e611eaf6594d11f913d18eabae51ff09bef.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:18.705Z&nbsp;&nbsp; &nbsp;02873ad486861456acddd80ac444cc7e8828b7eae1985ca11e5c8cbb26ce966e&nbsp;&nbsp; &nbsp;0.12.2<br> Faizaufa/redhead2018&nbsp;&nbsp; &nbsp;Redhead, J.W.; Coombes, C.F.; Dean, H.J.; Dyer, R.; Oliver, T.H.; Pocock, M.J.O.; Rorke, S.L.; Vanbergen, A.J.; Woodcock, B.A.; Pywell, R.F. (2018). Plant-pollinator interactions database for construction of potential networks. NERC Environmental Information Data Centre. https://doi.org/10.5285/6d8d5cb5-bd54-4da7-903a-15bd4bbd531b&nbsp;&nbsp; &nbsp;https://github.com/Faizaufa/redhead2018/archive/89ca7296078cce01a293813e509700d6c05faabc.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:23.735Z&nbsp;&nbsp; &nbsp;1c7ea5a4d2cf7d51718723adaa2e36e0d936518921b7db8c02988cc37cacaa5c&nbsp;&nbsp; &nbsp;0.12.2<br> FloraVincent/DIDB&nbsp;&nbsp; &nbsp;Flora Vincent. 2019. DIDB: Diatom Interaction DataBase.&nbsp;&nbsp; &nbsp;https://github.com/FloraVincent/DIDB/archive/c5146d235b6d0701d8828d518bb7f290a5633a31.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:40.111Z&nbsp;&nbsp; &nbsp;045e44bc71c26b826a30932236254fac4727fce6b9a1a77cd3422ba28e8fe7a0&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/JLewis_GoMexSi&nbsp;&nbsp; &nbsp;http://gomexsi.tamucc.edu&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/JLewis_GoMexSi/archive/f55ee847661a28b136a86f6669e81669f656fc1b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:02.172Z&nbsp;&nbsp; &nbsp;01d7c985a183f74a69a709e342252489417fb667a28c66c461bc71043835a0bc&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/abascal&nbsp;&nbsp; &nbsp;http://gomexsi.tamucc.edu&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/abascal/archive/d2bbfcdfa4499ecc7fb021cee66aae05139b9a08.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:20:12.703Z&nbsp;&nbsp; &nbsp;4486a9ea58c7401723df75dafc2b5f24ce275d7e7edf5defb56bc5cc1103a9fc&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/akin&nbsp;&nbsp; &nbsp;Akin, S., &amp; Winemiller, K. O. (2006). Seasonal variation in food web composition and structure in a temperate tidal estuary. Estuaries and Coasts, 29(4), 552&ndash;567. doi:10.1007/bf02784282&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/akin/archive/6fc86470c20812be325612f51783ae3e7342a2ea.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:20:27.551Z&nbsp;&nbsp; &nbsp;da0b6f7eb2436d7123c24ddf44d49c388b44d770604558d54943968e834fce03&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/baremore&nbsp;&nbsp; &nbsp;Baremore, I., Murie, D., &amp; Carlson, J. (2010). Seasonal and size-related differences in diet of the Atlantic angel shark Squatina dumeril in the northeastern Gulf of Mexico. Aquatic Biology, 8, 125&ndash;136. doi:10.3354/ab00214&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/baremore/archive/de843f7a86b9cb2e5b2d511e9082e13c7b88862f.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:20:31.971Z&nbsp;&nbsp; &nbsp;ed5b533a989052437aeee0ad2096ff3d22cca734ecbf720e23bd2e7b4327ecff&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/blewett&nbsp;&nbsp; &nbsp;Blewett, D. A., Hensley, R. A., &amp; Stevens, P. W. (2006). Feeding Habits of Common Snook, Centropomus undecimalis, in Charlotte Harbor, Florida. Gulf and Caribbean Research, 18. doi:10.18785/gcr.1801.01&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/blewett/archive/922e3ed1531d2af5720fdbc0307a1942b5ac050d.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:20:36.806Z&nbsp;&nbsp; &nbsp;0bf13b222406591c19c4b8305e2a1e9416765ab94c8d729fe4213e814c0542b6&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/interaction-data&nbsp;&nbsp; &nbsp;http://gomexsi.tamucc.edu&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/interaction-data/archive/05dcb4f75951950dead51d6f693ba24a87db9a92.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:20:46.610Z&nbsp;&nbsp; &nbsp;ed9062d4bb06ce6136f367b0c2180b4502ecee88fe8acdcbc6b145a3812824de&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/simons&nbsp;&nbsp; &nbsp;Simons JD. 1997. Food habits and trophic structure of the demersal fish assemblages on the Mississippi-Alabama continental shelf. PhD Thesis.&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/simons/archive/5af33796c194bed634bffc3790ed540d42fa03aa.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:16.191Z&nbsp;&nbsp; &nbsp;6cfad1260fdf4d6fc0d3776f15b3c5e9053b960da74a8f3367a76a05c892c6ec&nbsp;&nbsp; &nbsp;0.12.2<br> GoMexSI/wrast&nbsp;&nbsp; &nbsp;Wrast JL. 2008. Spatiotemporal And Habitat-mediated Food Web Dynamics in Lavaca Bay, Texas. Master Thesis.&nbsp;&nbsp; &nbsp;https://github.com/GoMexSI/wrast/archive/6a06057d7f3ccc4204378573ca03725862256d0c.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:21.312Z&nbsp;&nbsp; &nbsp;30e9f0533a5c1a15c291bbb64d5e5fc3f77ea7fb4ebf7b07fc0ea9abef2ffa20&nbsp;&nbsp; &nbsp;0.12.2<br> KatjaSchulz/dinosaur-biotic-interactions&nbsp;&nbsp; &nbsp;Katja Schulz. 2015. Information about dinosaur diets manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/KatjaSchulz/dinosaur-biotic-interactions/archive/e744bef6ff47d57b86b81fe767ad983ef5b7f460.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:36.498Z&nbsp;&nbsp; &nbsp;39c57bf7c59637e4495e68746743421f6e07fa61d9d25495fd92210be1333324&nbsp;&nbsp; &nbsp;0.12.2<br> NASUA/ZalophusPredatoryInteractions&nbsp;&nbsp; &nbsp;Carranco.S ; Mu&ntilde;oz, G. 2018. Galapagos sea lion fish-feeding interaction dataset in the San Cristobal Island&nbsp;&nbsp; &nbsp;https://github.com/NASUA/ZalophusPredatoryInteractions/archive/c9f28887dd94d5c9dac239ed23f9f92a6bbb8b11.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:10.101Z&nbsp;&nbsp; &nbsp;770be4c86440edc567306f0d910303eabb4ac8ce4d19a46431c68385e1a34523&nbsp;&nbsp; &nbsp;0.12.2<br> PHI-base/data&nbsp;&nbsp; &nbsp;Urban M, Cuzick A, Rutherford K, Irvine A, Pedro H, Pant R, Sadanadan V, Khamari L, Billal S, Mohanty S, Hammond-Kosack KE. PHI-base: a new interface and further additions for the multi-species pathogen-host interactions database. Nucleic Acids Res. 2017 Jan 4;45(D1):D604-D610. doi: 10.1093/nar/gkw1089. Epub 2016 Dec 3. PMID:27915230&nbsp;&nbsp; &nbsp;https://github.com/PHI-base/data/archive/55bdbb9105aeeafbd31e830a6bc18cc2afaa315e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:07.815Z&nbsp;&nbsp; &nbsp;9fb590efddf1ce872d382003568efb4bd43378991e6752b4818216840b22b7aa&nbsp;&nbsp; &nbsp;0.12.2<br> ParasiteTracker/tick-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, Katja C. 2020. Biotic species interactions about ticks manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/ParasiteTracker/tick-interaction-database/archive/09944e1a7283c2ff8514b1860e8299c527517040.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:33.097Z&nbsp;&nbsp; &nbsp;db8e1ea4e698ded1f7dbd6e74531899d8e02c78000887c80143776d653b6fe51&nbsp;&nbsp; &nbsp;0.12.2<br> ParasiteTracker/vampire-moth-dwca&nbsp;&nbsp; &nbsp;Occurrence Records for vampire-moths-and-their-fruit-piercing-relatives. 2018-09-27. South Central California Network - 2ba077c1-aa41-455e-9a84-bccb61a91230.&nbsp;&nbsp; &nbsp;https://github.com/ParasiteTracker/vampire-moth-dwca/archive/c4549a1690b84595c88946f477057b9ab76e5360.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:37.906Z&nbsp;&nbsp; &nbsp;5304518021dd435af41637132ad7629d464db3f8221a60f9e4cb89fddc28c0e9&nbsp;&nbsp; &nbsp;0.12.2<br> ParasiteTracker/vampire-moths-and-their-fruit-piercing-relatives-Occurrence-Records&nbsp;&nbsp; &nbsp;Occurrence Records for vampire-moths-and-their-fruit-piercing-relatives. 2018-09-27. South Central California Network - 2ba077c1-aa41-455e-9a84-bccb61a91230.&nbsp;&nbsp; &nbsp;https://github.com/ParasiteTracker/vampire-moths-and-their-fruit-piercing-relatives-Occurrence-Records/archive/c4549a1690b84595c88946f477057b9ab76e5360.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:43.133Z&nbsp;&nbsp; &nbsp;5304518021dd435af41637132ad7629d464db3f8221a60f9e4cb89fddc28c0e9&nbsp;&nbsp; &nbsp;0.12.2<br> ThaoLe20/Bottlenose-Dolphin-Diet&nbsp;&nbsp; &nbsp;: Gime&acute;nez J, Marc&cedil;alo A, Ramı&acute;rez F, Verborgh P, Gauffier P, Esteban R, et al. (2017) Diet of bottlenose dolphins (Tursiops truncatus) from the Gulf of Cadiz: Insights from stomach content and stable isotope analyses. PLoS ONE 12 (9): e0184673. https://doi.org/10.1371/journal. pone.0184673&nbsp;&nbsp; &nbsp;https://github.com/ThaoLe20/Bottlenose-Dolphin-Diet/archive/c9ff689ba155ec0120532105b5f1c8e506c4cd11.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:38.813Z&nbsp;&nbsp; &nbsp;759b2c7aad030f4c79835707da62b6c1f5f7ab58e06490d57d5e492b81f69086&nbsp;&nbsp; &nbsp;0.12.2<br> ThaoLe20/Diet-of-bottlenose-dolphins&nbsp;&nbsp; &nbsp;: Gime&acute;nez J, Marc&cedil;alo A, Ramı&acute;rez F, Verborgh P, Gauffier P, Esteban R, et al. (2017) Diet of bottlenose dolphins (Tursiops truncatus) from the Gulf of Cadiz: Insights from stomach content and stable isotope analyses. PLoS ONE 12 (9): e0184673. https://doi.org/10.1371/journal. pone.0184673&nbsp;&nbsp; &nbsp;https://github.com/ThaoLe20/Diet-of-bottlenose-dolphins/archive/c9ff689ba155ec0120532105b5f1c8e506c4cd11.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:43.150Z&nbsp;&nbsp; &nbsp;759b2c7aad030f4c79835707da62b6c1f5f7ab58e06490d57d5e492b81f69086&nbsp;&nbsp; &nbsp;0.12.2<br> ThaoLe20/Fish-diets&nbsp;&nbsp; &nbsp;: Gime&acute;nez J, Marc&cedil;alo A, Ramı&acute;rez F, Verborgh P, Gauffier P, Esteban R, et al. (2017) Diet of bottlenose dolphins (Tursiops truncatus) from the Gulf of Cadiz: Insights from stomach content and stable isotope analyses. PLoS ONE 12 (9): e0184673. https://doi.org/10.1371/journal. pone.0184673&nbsp;&nbsp; &nbsp;https://github.com/ThaoLe20/Fish-diets/archive/c9ff689ba155ec0120532105b5f1c8e506c4cd11.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:47.560Z&nbsp;&nbsp; &nbsp;759b2c7aad030f4c79835707da62b6c1f5f7ab58e06490d57d5e492b81f69086&nbsp;&nbsp; &nbsp;0.12.2<br> ThaoLe20/Testing&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/ThaoLe20/Testing/archive/40a28dac110a264ad69c63c024ca11646f5f4250.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:56.823Z&nbsp;&nbsp; &nbsp;7f4c77a3c4bd2218372929128ec6871c49364b0e6852ab628ad3f5e8022755cd&nbsp;&nbsp; &nbsp;0.12.2<br> ThaoLe20/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/ThaoLe20/template-dataset/archive/40a28dac110a264ad69c63c024ca11646f5f4250.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:52.605Z&nbsp;&nbsp; &nbsp;7f4c77a3c4bd2218372929128ec6871c49364b0e6852ab628ad3f5e8022755cd&nbsp;&nbsp; &nbsp;0.12.2<br> TutoTestTuto/tutorial&nbsp;&nbsp; &nbsp;P&eacute;rez-Botello A M and Sim&otilde;es N (2019). Sponge-dwelling fauna from the Gulf of Mexico and the Caribbean sea a manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/TutoTestTuto/tutorial/archive/fea86a576396b139c65e0dbc7f8cca2f02cdde84.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:21.568Z&nbsp;&nbsp; &nbsp;c6430c995604d0edec3a05b678dddda5d3e0281c2a6c1b4f86319375cd2f4035&nbsp;&nbsp; &nbsp;0.12.2<br> UCcongenomics/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/UCcongenomics/template-dataset/archive/ab8b030f16f4de01dc42c1c5669c629943dfec9a.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:26.219Z&nbsp;&nbsp; &nbsp;0edd05ff80b5ca69d0d7a695ecee4a8e485fea2b6c2b555b011b7e09ee17da73&nbsp;&nbsp; &nbsp;0.12.2<br> ZekeMarshall/ZMBioticInteractions&nbsp;&nbsp; &nbsp;Zeke Marshall. 2021. Species interactions manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/ZekeMarshall/ZMBioticInteractions/archive/8a2c1b0c5d40e115d06fe12d0d366ab5f2e2ca75.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:51:28.522Z&nbsp;&nbsp; &nbsp;654e05ecf286db677fb8a6a9bc9daea8ace38724564f11e85f9c2c2934340745&nbsp;&nbsp; &nbsp;0.12.2<br> abarner/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/abarner/template-dataset/archive/4bdb2493d4a6a9c36e864b1a2e3bab40459a1098.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:10:53.387Z&nbsp;&nbsp; &nbsp;e7410c21c897071619c1c444b5cc30662aa962362b8c916a0135e77d0536ba35&nbsp;&nbsp; &nbsp;0.12.2<br> arw36/willoughby-etal-2017-roost-interactions&nbsp;&nbsp; &nbsp;Willoughby AR, Phelps KL, Olival KJ, Predict Consortium. A comparative analysis of viral richness and viral sharing in cave-roosting bats. Diversity. 2017 Sep;9(3):35.&nbsp;&nbsp; &nbsp;https://github.com/arw36/willoughby-etal-2017-roost-interactions/archive/05e08a5961d8c126103046a945dfea67ed20475b.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:04.388Z&nbsp;&nbsp; &nbsp;f2bce55ce35f646dd3d8714f7145d1dcf8478f609b57aecafc2194a81221e27a&nbsp;&nbsp; &nbsp;0.12.2<br> arw36/willoughby-etal-2017-virus-interactions&nbsp;&nbsp; &nbsp;Willoughby AR, Phelps KL, Olival KJ, Predict Consortium. A comparative analysis of viral richness and viral sharing in cave-roosting bats. Diversity. 2017 Sep;9(3):35.&nbsp;&nbsp; &nbsp;https://github.com/arw36/willoughby-etal-2017-virus-interactions/archive/113064ba0e2cb6e16c290cffb5b4d2342f0aa728.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:09.257Z&nbsp;&nbsp; &nbsp;a5546a583e267d22cae305420804f16684115cf8d73b404b8877b738cc2eabe1&nbsp;&nbsp; &nbsp;0.12.2<br> beraute/Klamath-mountains&nbsp;&nbsp; &nbsp;Genus level interactions from a metagenomic analysis of eDNA samples from the Klamath mountains&nbsp;&nbsp; &nbsp;https://github.com/beraute/Klamath-mountains/archive/2a885acccb9c7d8f0f368044d9ba71d74c309450.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:40.392Z&nbsp;&nbsp; &nbsp;8bdedeb77ef6ec5be27937768adaf20d48671be636bffb79eb9d278d8bb666ed&nbsp;&nbsp; &nbsp;0.12.2<br> beraute/Pillar_Point_16S_18S&nbsp;&nbsp; &nbsp;Meyer R.S., et al., Beach environmental DNA fills gaps in photographic biomonitoring to track spatiotemporal community turnover across 82 phyla. Environmental DNA, submitted June 3, 2019.&nbsp;&nbsp; &nbsp;https://github.com/beraute/Pillar_Point_16S_18S/archive/3629f2e425baf3c0cbdee5347c6dc92cc608dde7.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:45.422Z&nbsp;&nbsp; &nbsp;96ae6aa18e4f996fd43707b8898a2bd6d677611f61565e8011fe4e6e64b57bb0&nbsp;&nbsp; &nbsp;0.12.2<br> beraute/Pillar_Point_CO1_16S&nbsp;&nbsp; &nbsp;Meyer R.S., et al., Beach environmental DNA fills gaps in photographic biomonitoring to track spatiotemporal community turnover across 82 phyla. Environmental DNA, submitted June 3, 2019.&nbsp;&nbsp; &nbsp;https://github.com/beraute/Pillar_Point_CO1_16S/archive/9a003a189116c5ea00cb4b53d3e44a0d791661eb.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:11:50.525Z&nbsp;&nbsp; &nbsp;58700f4b0c49c2a22ec304a601e59f3d0015bfb88b7a58cd1e18ee0485e5d9e5&nbsp;&nbsp; &nbsp;0.12.2<br> cmungall/Benesh-et-al-2017&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/19/2017. Species associations manually extracted from Benesh, D. P., Lafferty, K. D. and Kuris, A. (2017), A life cycle database for parasitic acanthocephalans, cestodes, and nematodes. Ecology, 98: 882. doi:10.1002/ecy.1680&nbsp;&nbsp; &nbsp;https://github.com/cmungall/Benesh-et-al-2017/archive/129b7f7f66ee09bc4da41e46ea3dd7ad89e53fea.zip&nbsp;&nbsp; &nbsp;2021-02-19T23:24:26.371Z&nbsp;&nbsp; &nbsp;8ff87825f8a732d743ba938a6984fad95be0b80d3622e3dd2bf9f093a795a9b3&nbsp;&nbsp; &nbsp;0.12.2<br> cmungall/dinosaur-biotic-interactions&nbsp;&nbsp; &nbsp;Katja Schulz. 2015. Information about dinosaur diets manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/cmungall/dinosaur-biotic-interactions/archive/e744bef6ff47d57b86b81fe767ad983ef5b7f460.zip&nbsp;&nbsp; &nbsp;2021-02-19T23:24:29.631Z&nbsp;&nbsp; &nbsp;d0f170c3096f6084e8a085260cd6f0df68e92b8cd66aa3c91a0c328daf58de33&nbsp;&nbsp; &nbsp;0.12.2<br> cmungall/dinosaur-biotic-interactions1&nbsp;&nbsp; &nbsp;Katja Schulz. 2015. Information about dinosaur diets manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/cmungall/dinosaur-biotic-interactions1/archive/e744bef6ff47d57b86b81fe767ad983ef5b7f460.zip&nbsp;&nbsp; &nbsp;2021-02-19T23:24:31.228Z&nbsp;&nbsp; &nbsp;d0f170c3096f6084e8a085260cd6f0df68e92b8cd66aa3c91a0c328daf58de33&nbsp;&nbsp; &nbsp;0.12.2<br> debpaul/DIDB&nbsp;&nbsp; &nbsp;Flora Vincent. 2019. DIDB: Diatom Interaction DataBase.&nbsp;&nbsp; &nbsp;https://github.com/debpaul/DIDB/archive/9497975db6f2baa19008e517e757592581f32b36.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:08.606Z&nbsp;&nbsp; &nbsp;a0f30f607557a744bb6df3ecd4b5041963f400f1b93bf4df42409e47f3d8ae78&nbsp;&nbsp; &nbsp;0.12.2<br> diatomsRcool/greenland_interactions&nbsp;&nbsp; &nbsp;Thessen AE. 2017. Biotic Interactions in Greenland. GloBI. 10.5281/zenodo.266824&nbsp;&nbsp; &nbsp;https://zenodo.org/record/1438458/files/diatomsRcool/greenland_interactions-v20180928.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:16.500Z&nbsp;&nbsp; &nbsp;b9c4dcaf482278fa79811473b3398318dbdab1b3ec2f296856a339e1e2ce9d47&nbsp;&nbsp; &nbsp;0.12.2<br> diatomsRcool/yellowstone_grizzly&nbsp;&nbsp; &nbsp;Gunther KA et al. 2014 Dietary breadth of grizzly bears in the Greater Yellowstone Ecosystem. Ursus 25(1):60-72&nbsp;&nbsp; &nbsp;https://zenodo.org/record/266827/files/diatomsRcool/yellowstone_grizzly-1.0.0.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:24.107Z&nbsp;&nbsp; &nbsp;f77810acb128c5e85f7aa96164705a133a4f9dc303c6c266fe3b1244880aa66c&nbsp;&nbsp; &nbsp;0.12.2<br> ekrimmel/paleo-interactions-test&nbsp;&nbsp; &nbsp;Paleo Digitization Working Group. Biological associations extracted from fossil specimens.&nbsp;&nbsp; &nbsp;https://github.com/ekrimmel/paleo-interactions-test/archive/9e8b180c0a41daffcfc148593d72059cbbb1ef94.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:28.825Z&nbsp;&nbsp; &nbsp;6f67698baec5755af4780bdda486ff40bea1b3734b4c9bf7897b184287397ee7&nbsp;&nbsp; &nbsp;0.12.2<br> elntangle/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, Katja C. 2020. Biotic species interactions about bees (Anthophila) manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/elntangle/bee-interaction-database/archive/7c3ad5013d98925b38c7b3b118886a44c68d2b40.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:12:33.587Z&nbsp;&nbsp; &nbsp;54e7732303c97e315b835ff743e3b71ca40c932e4e382d36d066285f915d2820&nbsp;&nbsp; &nbsp;0.12.2<br> fgabriel1891/Palm-Frugivore_Interactions_Neo-Afrotropics&nbsp;&nbsp; &nbsp;Mu&ntilde;oz, G., Tr&oslash;jelsgaard, K., &amp; W.D. Kissling. 2018. A synthesis of animal-mediated seed dispersal of palms reveals distinct biogeographic differences in species interactions. Journal of Biogeography (in progress)&nbsp;&nbsp; &nbsp;https://github.com/fgabriel1891/Palm-Frugivore_Interactions_Neo-Afrotropics/archive/49f339a3603b19b8a6f602612dc2dfae9c252131.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:29.807Z&nbsp;&nbsp; &nbsp;130dae9a443c1ec65ec6ee14693bd849504a0184a24656032d4e3a8b77c8e0a7&nbsp;&nbsp; &nbsp;0.12.2<br> fgabriel1891/Plant-Frugivore-Interactions-SouthEastAsia&nbsp;&nbsp; &nbsp;F. Gabriel. Mu&ntilde;oz. 2017. Palm-Animal frugivore associations extracted from literature with Biodiversity Observations Miner for SouthEast Asia.&nbsp;&nbsp; &nbsp;https://github.com/fgabriel1891/Plant-Frugivore-Interactions-SouthEastAsia/archive/a733103ca98e82c11a081888006efad99f75ab84.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:34.973Z&nbsp;&nbsp; &nbsp;4c624cc07f8a048526b213089fb716618f5116aa7b9fe98b485372175b0da9ad&nbsp;&nbsp; &nbsp;0.12.2<br> fonturbel-lab/pollination_catalogue&nbsp;&nbsp; &nbsp;Giselle Muschett &amp; Francisco E. Font&uacute;rbel. 2021. A comprehensive catalogue of plant &ndash; pollinator interactions for Chile&nbsp;&nbsp; &nbsp;https://github.com/fonturbel-lab/pollination_catalogue/archive/6ab041f11f052e82bbe01d2a701b5c1ea6d0918a.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:45.205Z&nbsp;&nbsp; &nbsp;d649df6b6c67ec34f9e4e8306ced772cbca541f3d8da659954cf4dfc9c4e6c4e&nbsp;&nbsp; &nbsp;0.12.2<br> genostack/Pathogen-host-range&nbsp;&nbsp; &nbsp;Shaw, LP, Wang, AD, Dylus, D, et al. The phylogenetic range of bacterial and viral pathogens of vertebrates. Mol Ecol. 2020; 29: 3361&ndash; 3379. https://doi.org/10.1111/mec.15463&nbsp;&nbsp; &nbsp;https://github.com/genostack/Pathogen-host-range/archive/f4014ed79b1211a63e20fedfae7d42a305f7775e.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:14:59.267Z&nbsp;&nbsp; &nbsp;9ba203583352f358b2df82e35a13fd1acb2fd7cab2556c3f75233b14db813aea&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/AfricaTreeDatabase&nbsp;&nbsp; &nbsp;Seltzer, Carrie; Wysocki, William; Palacios, Melissa; Eickhoff, Anna; Pilla, Hannah; Aungst, Jordan; Mercer, Aaron; Quicho, Jamie; Voss, Neil; Xu, Man; J. Ndangalasi, Henry; C. Lovett, Jon; J. Cordeiro, Norbert (2015): Plant-animal interactions from Africa. figshare. https://dx.doi.org/10.6084/m9.figshare.1526128&nbsp;&nbsp; &nbsp;https://zenodo.org/record/229547/files/globalbioticinteractions/AfricaTreeDatabase-v0.1.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:15:06.784Z&nbsp;&nbsp; &nbsp;e1cf0a3ca54cd2afba6faafa87fb1c289d657fb70927fc5dd522e91e959c2e37&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/BCI_Seed_Predator&nbsp;&nbsp; &nbsp;Gripenberg, S. et al., 2019. A highly resolved food web for insect seed predators in a species‐rich tropical forest F. Jordan, ed. Ecology Letters, 22(10), pp.1638&ndash;1649. Available at: https://doi.org/10.1111/ele.13359.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/BCI_Seed_Predator/archive/25726180d087ffe772515aee27173a4375cce6ee.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:20.427Z&nbsp;&nbsp; &nbsp;caa991fd26c5a0d266fdb8677c4f05d7d07b659d24ed6e0f7c7ba37673cb6760&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/Catalogue-of-Afrotropical-Bees&nbsp;&nbsp; &nbsp;Eardley C, Coetzer W. 2016. Catalogue of Afrotropical Bees.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/4216814/files/globalbioticinteractions/Catalogue-of-Afrotropical-Bees-v0.2.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:28:25.644Z&nbsp;&nbsp; &nbsp;ba8760d5c6f9af48442f603d54f970e236d17b7c946a4da418f1e875f26044b2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/EDWIP&nbsp;&nbsp; &nbsp;Failed inoculations indexed from negative.csv of Onstad, D.W. EDWIP: Ecological Database of the World&#39;s Insect Pathogens. Data provided by Onstad and transcribed by Tad Dallas .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/EDWIP/archive/8849e26d1a6f1033ee26d39648a8e31a4b4d9da2.zip&nbsp;&nbsp; &nbsp;2021-06-24T19:12:19.609Z&nbsp;&nbsp; &nbsp;445c540e3852eb3c92217d24d9efb29837a48d631357dce338a2ad4f3dde0421&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/NeoBat_Interactions&nbsp;&nbsp; &nbsp;Florez-Montero GL, Muylaert RL, Geiselman C, Nogueira MR, Santana SE, Stevens RD, Tschapka M, Rodrigues FA, Mello MAR. 2021. NeoBat Interactions: a data set of bat-plant interactions in the Neotropics. Submitted.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/NeoBat_Interactions/archive/2a6fc0093c18a2b956da43771532bcdad8817dd3.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:37:15.403Z&nbsp;&nbsp; &nbsp;637e4bee117333bf7a6e13d0e9cce03f91ad171e1673ccff2c90f9f215ff2364&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/PIDA&nbsp;&nbsp; &nbsp;Bjorb&aelig;kmo, M. F. M., Evenstad, A., R&oslash;s&aelig;g, L. L., Krabber&oslash;d, A. K., Logares, R. (2019) The planktonic protist interactome: emerging trends after a century of research. doi: https://doi.org/10.1101/587352&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/PIDA/archive/b2781145fe334b572e59503df3f7e15a6eb98e95.zip&nbsp;&nbsp; &nbsp;2021-09-11T01:24:18.244Z&nbsp;&nbsp; &nbsp;504fa7b91a5a29d85c04136ad50b154c989b63ff00a78e64c456a50323961e29&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ansp-para&nbsp;&nbsp; &nbsp;Academy of Natural Sciences Entomology Collection for the Parasite Tracker Project&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ansp-para/archive/5e6592ad09ec89ba7958266ad71ec9d5d21d1a44.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:15:12.885Z&nbsp;&nbsp; &nbsp;1cd1820f76f63aaac60bbe6c521cd710df345057d17abee1361cc50071e0182a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/aps&nbsp;&nbsp; &nbsp;Poelen, JH (2016). Plant pathogen-host interactions scraped from Common Names of Plant Diseases published by the American Phytopathological Society at http://www.apsnet.org/publications/commonnames/Pages/default.aspx using Samara, a Planteome (http://planteome.org) plant-trait scraper.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/aps/archive/454b09c5307f6a5dbb16343dfed8bb8fbb54df2f.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:15:18.387Z&nbsp;&nbsp; &nbsp;c46ed1a78fcbd1bdd20a503b099e9f7a684132101d7ac761d4a3afdd439993b5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/aps-turfgrasses&nbsp;&nbsp; &nbsp;Poelen, JH (2017). Plant pathogen-host interactions semi-automatically scraped from Common Names of Plant Diseases published by the American Phytopathological Society at http://www.apsnet.org/publications/commonnames/Pages/Turfgrasses.aspx using Samara, a Planteome (http://planteome.org) plant-trait scraper.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/aps-turfgrasses/archive/bdd72cdc780a1963ad56f6a5249350cce21e2bd6.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:16:23.911Z&nbsp;&nbsp; &nbsp;7fd6f87de46b667f8e6d6e641ee143dcf30d92c9c739e25e0122119a1a3931c9&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/asu-asuhic&nbsp;&nbsp; &nbsp;Arizona State University Hasbrouck Insect Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/asu-asuhic/archive/025665959d3a7a37dc9dcc532c80166359274dd7.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:16:55.926Z&nbsp;&nbsp; &nbsp;f2efa1252d76a9c1a1637b9af83dd48f99305ee584cf208d851df61423f33d7e&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/aziz2021&nbsp;&nbsp; &nbsp;Aziz, S. A., McConkey, K. R., Tanalgo, K., Sritongchuay, T., Low, M.-R., Yong, J. Y., &hellip; Racey, P. A. (2021). The Critical Importance of Old World Fruit Bats for Healthy Ecosystems and Economies. Frontiers in Ecology and Evolution, 9. doi:10.3389/fevo.2021.641411&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/aziz2021/archive/5308f9369eef0f3ea425425297b713f4da1c0ddc.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:17:08.831Z&nbsp;&nbsp; &nbsp;7249b7430c1f77ca651089075b89d339cb459d969f600cec5a740d44662b2f42&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/barnes&nbsp;&nbsp; &nbsp;Barnes, C. et al., 2008. Predator and prey body sizes in marine food webs. Ecology, 89(3), pp.881&ndash;881. Available at: https://doi.org/10.1890/07-1551.1 . Data provided by Carolyn Barnes. Also available at http://www.esapubs.org/Archive/ecol/E089/051/ .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/barnes/archive/8acd34a47c039cedc77e876c4a99a3594db6c955.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:17:14.848Z&nbsp;&nbsp; &nbsp;8f82ceb66115aafafd58eb4aabfe922a394635655ccbacd8de7dd030bedabecc&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bat-co-roosting-database&nbsp;&nbsp; &nbsp;Aja Sherman, Cullen Geiselman. 2021. Bat Co-Roosting Database&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bat-co-roosting-database/archive/b2f77ab446ce382ff4283e408ba01d9516b1ad7e.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:17:56.801Z&nbsp;&nbsp; &nbsp;3a64a544af1ff81a5ce8f94ebc0484c2289de463c5ea10e77afd9c090117d47a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/batbase&nbsp;&nbsp; &nbsp;Geiselman, Cullen K. &amp; Sarah Younger. 2020. Bat Eco-Interactions Database. www.batbase.org&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/batbase/archive/9c65cfeee1a054f9db8cd8bf6892017fd1b3c840.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:17:43.175Z&nbsp;&nbsp; &nbsp;6755e9ff065849a8a7472858e98b62458fab93e4c20006f823e844a3ee77f5f2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/batley2018&nbsp;&nbsp; &nbsp;Batley, Michael (2018): Flower-visiting records for Australian native bees. figshare. Collection. https://doi.org/10.6084/m9.figshare.c.3521328.v4&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/batley2018/archive/ef45db23754053cc3c8297f5e121edd1fe97d094.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:02.039Z&nbsp;&nbsp; &nbsp;af394bc1d6d8e5118a06fbc076082d38caf63edc6b6357474c0063b318a4750b&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/batplant&nbsp;&nbsp; &nbsp;Geiselman, Cullen K. and Tuli I. Defex. 2015. Bat Eco-Interactions Database. www.batplant.org&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/batplant/archive/a2e1b57052244d5251d17e96ea61f58bea88975e.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:06.291Z&nbsp;&nbsp; &nbsp;4736455530a1365253d79821bc9df783fc73c965b10efdf504320d2bd478511f&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bco-dmo&nbsp;&nbsp; &nbsp;Almeida, F. (2005) Trophic Ecology of Atlantic Cod, off Cape Cod, MA, from F/V Riena Marie NEC-FA2001-1 in the Gulf of Maine from 2001-2004 (NEC-CoopRes project). Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version final) Version Date 2005-10-01 [if applicable, indicate subset used]. http://lod.bco-dmo.org/id/dataset/3087&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bco-dmo/archive/6e68501de3d0c98a40d4176894b0e34a708afbc9.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:24.984Z&nbsp;&nbsp; &nbsp;dfa1db62b2eecb821b5bd7e6fa7db8147228209ecbd8473a2fed71482fe92ea3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/becker2020&nbsp;&nbsp; &nbsp;Daniel Becker, Gregory F Albery, Anna R Sjodin, Timothee Poisot, Tad Dallas, Evan A. Eskew, Maxwell J. Farrell, Sarah Guth, Barbara A Han, Nancy B Simmons, Colin J Carlson. 2020. Predicting wildlife hosts of betacoronaviruses for SARS-CoV-2 sampling prioritization. bioRxiv 2020.05.22.111344; doi: https://doi.org/10.1101/2020.05.22.111344&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/becker2020/archive/47c6ad28e1c5058f3c13ca69a59fdf21229e8d7f.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:33.251Z&nbsp;&nbsp; &nbsp;76667319c7164d237ecd37310a0545c0c6e509c22194c9cdd32959c3f5b33fb6&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, Katja C. 2020. Biotic species interactions about bees (Anthophila) manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bee-interaction-database/archive/45e327b9657b2f28604e8156f9e109362c7ceabb.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:38.682Z&nbsp;&nbsp; &nbsp;8f1ad83c0d74f7307d65e972e39d3de592a9825ff436ca4d28dea2ffa5f4ae4a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bell&nbsp;&nbsp; &nbsp;Bell, K. C., Matek, D., Demboski, J. R., &amp; Cook, J. A. (2015). Expanded Host Range of Sucking Lice and Pinworms of Western North American Chipmunks. Comparative Parasitology, 82(2), 312&ndash;321. doi:10.1654/4756.1 . Data provided by Kayce C. Bell.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bell/archive/fea11e28bce47ca9723f5e8f709b43c24e03a5e4.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:43.517Z&nbsp;&nbsp; &nbsp;1a74b60ec132ea0160eaf23ac304b4fa69cc0533aa1182aac23e51c55b5a0cd8&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bello2017&nbsp;&nbsp; &nbsp;Bello, C., Galetti, M., Montan, D., Pizo, M. A., Mariguela, T. C., Culot, L., Bufalo, F., Labecca, F., Pedrosa, F., Constantini, R., Emer, C., Silva, W. R., da Silva, F. R., Ovaskainen, O. and Jordano, P. (2017), Atlantic frugivory: a plant&ndash;frugivore interaction data set for the Atlantic Forest. Ecology, 98: 1729. doi:10.1002/ecy.1818&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bello2017/archive/7718c22ab0d05f9c0c504bbffeac7c404bb3c28b.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:48.771Z&nbsp;&nbsp; &nbsp;503cb1a56a24ed0a4deb794d441c239919c69b0ce24da7d4a9147343ec1c3fc5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bioinfo&nbsp;&nbsp; &nbsp;Food Webs and Species Interactions in the Biodiversity of UK and Ireland (Online). 2017. Data provided by Malcolm Storey. Also available from http://bioinfo.org.uk.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/1419646/files/globalbioticinteractions/bioinfo-v1.1.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:18:58.278Z&nbsp;&nbsp; &nbsp;267f89ae918e5e1d30f564166fb016624c953c2540142d79df0997551ae32133&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bold&nbsp;&nbsp; &nbsp;The International Barcode of Life Consortium (2016). International Barcode of Life project (iBOL). Occurrence dataset https://doi.org/10.15468/inygc6&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bold/archive/877bce8ed8ba09e9ae9d01ccc0f63f07f6b67606.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:20:24.173Z&nbsp;&nbsp; &nbsp;67f094097b67fb4872e62c55e52f7a691c04b054647f055f4794441f2da07aae&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bpbm-ent&nbsp;&nbsp; &nbsp;Bernice Pauahi Bishop Museum, J. Linsley Gressitt Center for Research in Entomology&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bpbm-ent/archive/c085398dddd36f8a1169b9cf57de2a572229341b.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:25:16.025Z&nbsp;&nbsp; &nbsp;9264ad319d6c8052f783ad98d00a0ea3b0d4731204be42f9e232db02d911714c&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/brose&nbsp;&nbsp; &nbsp;Brose, U. et al., 2005. Body sizes of consumers and their resources. Ecology, 86(9), pp.2545&ndash;2545. Available at: http://dx.doi.org/10.1890/05-0379.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/brose/archive/b092256f8ab5e1d7244f7cf8df64e797b7a7ab36.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:26:45.859Z&nbsp;&nbsp; &nbsp;583ebd4f1d0a2e27ae2212211bb1a98b27b68bc728f0ae6f16d6d99520492cf4&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/brose-gateway&nbsp;&nbsp; &nbsp;Brose, U. (2018). GlobAL daTabasE of traits and food Web Architecture (GATEWAy) version 1.0 [Data set]. German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig. https://doi.org/10.25829/IDIV.283-3-756&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/brose-gateway/archive/c89ac44d03decc76d59908d74e2a5ff6d3cd618d.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:26:51.929Z&nbsp;&nbsp; &nbsp;6e0393c09b7d421ec0eeceaeb59d9af5e832e543b45b80004605932541c84a2f&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/brtc-para&nbsp;&nbsp; &nbsp;Texas A&amp;M University, Biodiversity Teaching and Research Collections&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/brtc-para/archive/80cd7f140076fae1c09ebd0bba198b1c306e5661.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:05.708Z&nbsp;&nbsp; &nbsp;125166481ad721da41eb8ea81e8f93c0534abec9236cd7ec51c70dbb9e3693a7&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/bthk-database&nbsp;&nbsp; &nbsp;Bat Tree Habitat Key. 2021. Accessed in June 2021 at: http://battreehabitatkey.co.uk/?page_id=18&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/bthk-database/archive/f36178cc019853b74f617d0f79574b05148d1f96.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:11.908Z&nbsp;&nbsp; &nbsp;eb758ce39a959de91fde55489630a6658b7975f2711a5091d306bd1cf1856622&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/byrnes&nbsp;&nbsp; &nbsp;Southern California Bight Kelp Forest Food Web data provided by Jarrett Byrnes. Also available at https://doi.org/10.1111/j.1365-2486.2011.02409.x&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/byrnes/archive/bbdd207ba89302311d55afa1118e4f450f90d526.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:17.452Z&nbsp;&nbsp; &nbsp;296c7fae47a978de82f4d94cc048bd8c7b4b8df2ff36687796a4d731bd291fe3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/byu-byuc&nbsp;&nbsp; &nbsp;Brigham Young University Arthropod Museum&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/byu-byuc/archive/4a609ac6a9a03425e2720b6cdebca6438488f029.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:33.801Z&nbsp;&nbsp; &nbsp;f8cf85ca8364ed1e59ec637a717733643ce827bec64958f2c487251ab7f1d966&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/caps-pest-lists&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2017. Species associations manually extracted from US National Cooperative Agricultural Pest Survey at &lt;http://caps.ceris.purdue.edu/pest-lists&gt;.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/caps-pest-lists/archive/ee9e8b05c3ff5423e73902c775e5107918a1c730.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:47.099Z&nbsp;&nbsp; &nbsp;becc0da00ccc912402e46e4081d1d98c1dfbc2cf7d47f984fec15913059ea3d1&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/carril2018&nbsp;&nbsp; &nbsp;Carril OM, Griswold T, Haefner J, Wilson JS. (2018) Wild bees of Grand Staircase-Escalante National Monument: richness, abundance, and spatio-temporal beta-diversity. PeerJ 6:e5867 https://doi.org/10.7717/peerj.5867&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/carril2018/archive/867d6a3b5e6f87d8984cd2b3789d07bb96c6e205.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:27:54.215Z&nbsp;&nbsp; &nbsp;ead1da224736b97c0b1ddec33e6ba586bcd84d84b979aef3a235d39cb79bdaad&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cas-ent&nbsp;&nbsp; &nbsp;California Academy of Sciences Entomology&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cas-ent/archive/562aea232ec74ab615f771239451e57b057dc7c0.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:28:07.379Z&nbsp;&nbsp; &nbsp;2a49c54e499c6681c76b80f61733a894234a468755b5af87e4986b05a079f880&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/choy2017&nbsp;&nbsp; &nbsp;C. Anela Choy, Steven H. D. Haddock, Bruce H. Robison. 2017. Deep pelagic food web structure as revealed by in situ feeding observations. Proc. R. Soc. B 2017 284 20172116; DOI:10.1098/rspb.2017.2116.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/choy2017/archive/0c8cb50f9acb40672f6afd604e20a609a1728f03.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:28:30.888Z&nbsp;&nbsp; &nbsp;2ec0292fe51d6ec724a86e86c517105957c9a67f4c1d506703b8553d3fe33a22&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/classen2020&nbsp;&nbsp; &nbsp;Classen, Alice; Steffan-Dewenter, Ingolf (2020): Plant-pollinator interactions along an elevational gradient on Mt. Kilimanjaro. PANGAEA, https://doi.org/10.1594/PANGAEA.911390&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/classen2020/archive/4d5be9199a292e6d9016e2ab0db7bf2e16c2de27.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:28:36.954Z&nbsp;&nbsp; &nbsp;01c55aaa3154debe59f7e5a318c55d34be5142d4808a3d90cf4ea9d53ebb0ea6&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/clover&nbsp;&nbsp; &nbsp;Rory Gibb, Colin J. Carlson, &amp; Maxwell J Farrell. (2021, January 12). viralemergence/clover: Preprint + Zenodo (Version v0.1.1). Zenodo. http://doi.org/10.5281/zenodo.4435128&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/clover/archive/974e4d5c92ccd95b83fc7ef4adbe2a8a3bbc38f9.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:29:08.276Z&nbsp;&nbsp; &nbsp;53e548d13198d1e4919cc65792a79275fecb0a5fce6caa5c45aa35ea4f485c13&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cook&nbsp;&nbsp; &nbsp;Cook, CW. 2012. The early life history and reproductive biology of Cymothoa excisa, a marine isopod parasitizing Atlantic croaker, (Micropogonias undulatus), along the Texas coast. 2012. Masters Thesis. Available at https://repositories.lib.utexas.edu/handle/2152/ETD-UT-2012-08-6285 .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cook/archive/d64b90d5e34413ca7c223532e38081a2e9f956fd.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:29:14.324Z&nbsp;&nbsp; &nbsp;75884ae620c7e56cea1343ba7fa76ea1c83c34a927656501956626f155fd41c3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cpc-pollinators&nbsp;&nbsp; &nbsp;National Database Plant Pollinators. Center for Plant Conservation at San Diego Zoo Global. Accessed via https://saveplants.org/national-collection/pollinator-search/ on 2020-06-05.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cpc-pollinators/archive/a64674001b3fce1c5a4896d8c29b4bcb024e6f0b.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:29:20.001Z&nbsp;&nbsp; &nbsp;80abac6541124667b3d781fece9ba79da203b0d783e78c2cebdb0c88f63380e0&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cruaud&nbsp;&nbsp; &nbsp;Cruaud A, R&oslash;nsted N, Chantarasuwan B, Chou LS, Clement WL, Couloux A, Cousins B, Genson G, Harrison RD, Hanson PE, Hossaert-McKey M, Jabbour-Zahab R, Jousselin E, Kerdelhu&eacute; C, Kjellberg F, Lopez-Vaamonde C, Peebles J, Peng Y, Pereira RAS, Schramm T, Ubaidillah R, van Noort S, Weiblen GD, Yang D, Yodpinyanee A, Libeskind-Hadas R, Cook JM, Rasplus J, Savolainen V (2012) An extreme case of plant-insect co-diversification: figs and fig-pollinating wasps. Systematic Biology 61(6): 1029-1047. http://dx.doi.org/10.1093/sysbio/sys068&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cruaud/archive/0c67c201affa44ec9c47ef0b8d31a77660b53c9a.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:29:25.241Z&nbsp;&nbsp; &nbsp;a797212e3d56dfc573aecd510fb7dc8654b35e653b468bb32ee83f766529b41a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/csvcoll&nbsp;&nbsp; &nbsp;Consortium of Small Vertebrate Collections&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/csvcoll/archive/4e79e1c45880b17ec4a44a1ed28c69eb4aa258c6.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:30:06.830Z&nbsp;&nbsp; &nbsp;27295d49a696ef3addd9f3b6592e09ae4a6e3f91455bbef29ae66e82fe81db37&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cu-cuac&nbsp;&nbsp; &nbsp;Clemson University Arthropod Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cu-cuac/archive/6cdcbbaa4f7cec8e1eac705be3a999bc5259e00f.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:30:21.618Z&nbsp;&nbsp; &nbsp;2431adc8ba4d672d7a8ef1a9e5a8a4acea745a42f3f58ac48104437ae62a816f&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/cynipidaeNorthAmerica&nbsp;&nbsp; &nbsp;Deans, Andrew (2021). Catalog of Rose Gall, Herb Gall, and Inquiline Gall Wasps (Hymenoptera: Cynipidae) of the United States, Canada, and Mexico&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/cynipidaeNorthAmerica/archive/d0a4bd0c4a097e2338fc3044f74121325c5b2da9.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:30:28.772Z&nbsp;&nbsp; &nbsp;3d7c219bbd59bdefee2cc2ad9c5811484f26dc1c9628cb536dccae8e775757a6&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/dbatvir&nbsp;&nbsp; &nbsp;Chen L, Liu B, Yang J, Jin Q, 2014. DBatVir: the database of bat-associated viruses. Database (Oxford). 2014:bau021. doi:10.1093/database/bau021&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/dbatvir/archive/a6396374fe6d87faf66b22bd0f17dc7f87ec4610.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:30:46.180Z&nbsp;&nbsp; &nbsp;1aee1c4934167245e339a62c858c38e87d9801c900dca5471ff2d32870998b1c&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/delrisco2021&nbsp;&nbsp; &nbsp;Del Risco, A.A., Montoya, &Aacute;.M., Garc&iacute;a, V. et al. Data synthesis and dynamic visualization converge into a comprehensive biotic interaction network: a case study of the urban and rural areas of Bogot&aacute; D.C.. Urban Ecosyst (2021). https://doi.org/10.1007/s11252-021-01133-3&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/delrisco2021/archive/4c075a5a20925d9082c0cbc1a95446cd97d7f694.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:46:17.131Z&nbsp;&nbsp; &nbsp;e75ae32084a88e0ab6baac0e94d312e941759aa5252e3e84bdca84ed9f090293&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/drodvir&nbsp;&nbsp; &nbsp;Chen L, Liu B, Wu Z, Jin Q, Yang J, 2017. DRodVir: A resource for exploring the virome diversity in rodents. J Genet Genomics. 44(5):259-264.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/drodvir/archive/e7db3979b80629cf92830e6905568fe199d251b2.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:47:20.470Z&nbsp;&nbsp; &nbsp;f0b6bafa0ba29bcec6c61ff18ae7514e4898bdca8340afa60db90d93056848e4&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/dunne2016SanakIntertidal&nbsp;&nbsp; &nbsp;Intertidal food web manually extracted from Supplementary Data S1 in Dunne, J. A., Maschner, H., Betts, M. W., Huntly, N., Russell, R., Williams, R. J., &amp; Wood, S. A. (2016). The roles and impacts of human hunter-gatherers in North Pacific marine food webs. Scientific Reports, 6, 21179. doi:10.1038/srep21179&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3929796/files/globalbioticinteractions/dunne2016SanakIntertidal-v0.2.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:57:44.505Z&nbsp;&nbsp; &nbsp;2bf663afa2d7ca88ff7f5e91ca6bf901a08ee85a02c0accbdd415f5442d8910b&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/dunne2016SanakNearshore&nbsp;&nbsp; &nbsp;Nearshore foob web manually extracted from Supplementary Data S1 in Dunne, J. A., Maschner, H., Betts, M. W., Huntly, N., Russell, R., Williams, R. J., &amp; Wood, S. A. (2016). The roles and impacts of human hunter-gatherers in North Pacific marine food webs. Scientific Reports, 6, 21179. doi:10.1038/srep21179&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3929793/files/globalbioticinteractions/dunne2016SanakNearshore-v0.2.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:57:50.969Z&nbsp;&nbsp; &nbsp;8d0369e042ba7e9358d5b9c2cade93a81bf2b000ff48ccfac46539108012a41d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/eichenwald2021&nbsp;&nbsp; &nbsp;Adam Jacob Eichenwald. 2021. Manually transcribed Mojave Desert Tortoise (Gopherus agassizi) interaction records.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/eichenwald2021/archive/dea6eb7811739dba6ad9d891cc45ac51e5c48c0d.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:57:58.708Z&nbsp;&nbsp; &nbsp;6bc49c1f61d57b02fdbf3625e5c92fe7f89f3a7f28df16938824b9645c260fc8&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/emec&nbsp;&nbsp; &nbsp;University of California Berkeley, Essig Museum of Entomology&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/emec/archive/414e3efb04a566824842279a8159b942f4ce8959.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:58:02.966Z&nbsp;&nbsp; &nbsp;92f7f3df17e7460e5239b4c0b7407037b9200493cb0fcecad501f659cfc4d2e9&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ferrer-paris&nbsp;&nbsp; &nbsp; Ferrer-Paris, Jos&eacute; R.; S&aacute;nchez-Mercado, Ada Y.; Lozano, Cecilia; Zambrano, Liset; Soto, Jos&eacute;; Baettig, Jessica; Leal, Mar&iacute;a (2014): A compilation of larval host-plant records for six families of butterflies (Lepidoptera: Papilionoidea) from available electronic resources. figshare. http://dx.doi.org/10.6084/m9.figshare.1168861&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ferrer-paris/archive/8cb7c3fc348da26f2493723e8ed64b0f4b40c5cf.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:58:10.416Z&nbsp;&nbsp; &nbsp;7db53e93a2a3060379fca736b7b0325edc5daedfc182137e875ec09f1de51d53&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/fishbase&nbsp;&nbsp; &nbsp;Froese, R. and D. Pauly. Editors. 2018. FishBase. World Wide Web electronic publication. www.fishbase.org, version (10/2018).&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/fishbase/archive/ffea863a41bd29f9677aa33d5e4733484d2208fc.zip&nbsp;&nbsp; &nbsp;2021-11-12T23:58:41.733Z&nbsp;&nbsp; &nbsp;e313639f058613f3f301f451dab926f476c1ef7e60cf4f10a16d269a940f22c8&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/fmnh&nbsp;&nbsp; &nbsp;Field Museum of Natural History IPT&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/fmnh/archive/6bfc1b7e46140e93f5561c4e837826204adb3c2f.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:11:06.876Z&nbsp;&nbsp; &nbsp;fadb0d1726029125f3672c02e2ed610909ad45c06cc725358c1e67ce5d6eaa61&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/foodwebsdatabase&nbsp;&nbsp; &nbsp;Gray, C., Ma, A., Perkins, D., Hudson, L., Figueroa, D., &amp; Woodward, G. (2015). Database of trophic interactions [Data set]. Zenodo. http://doi.org/10.5281/zenodo.13751&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/foodwebsdatabase/archive/4aa24df2e9712264a52b148f6486df4b54ee7c49.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:11:45.851Z&nbsp;&nbsp; &nbsp;b57fe0d4dcdc1585e5ce3912dca07cbcef8a6a28ffbf8ea83b342d668dfcdada&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/fricke2020&nbsp;&nbsp; &nbsp;Fricke, E.C., Svenning, J. Accelerating homogenization of the global plant&ndash;frugivore meta-network. Nature 585, 74&ndash;78 (2020). https://doi.org/10.1038/s41586-020-2640-y&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/fricke2020/archive/a104a34d91a6267efdc0660ff45ca7783cfc8b20.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:00.080Z&nbsp;&nbsp; &nbsp;4db4424a537110e9c844185d69fe6d6c2d313a76913d55103bd8ba3a98a8fcad&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/fsca&nbsp;&nbsp; &nbsp;Florida State Collection of Arthropods&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/fsca/archive/682f11686317ae81959a043bd6b493ddfc06c438.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:16.204Z&nbsp;&nbsp; &nbsp;3201ee15dd3738488698c6450fe91e978124b88b152e7293461f8dd08303d31e&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/gandhi2009&nbsp;&nbsp; &nbsp;Gandhi, K. J. K., &amp; Herms, D. A. (2009). North American arthropods at risk due to widespread Fraxinus mortality caused by the Alien Emerald ash borer. Biological Invasions, 12(6), 1839&ndash;1846. doi:10.1007/s10530-009-9594-1.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/gandhi2009/archive/db7c33a520bfcbd39611c20cbbb791513cc24f92.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:21.003Z&nbsp;&nbsp; &nbsp;e8f7083c52c07739eab1e987dccca705bd3f334ef6f84348f22d1ba106213f89&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/gemina&nbsp;&nbsp; &nbsp;Schriml, L. M., Arze, C., Nadendla, S., Ganapathy, A., Felix, V., Mahurkar, A., &hellip; Hall, N. (2009). GeMInA, Genomic Metadata for Infectious Agents, a geospatial surveillance pathogen database. Nucleic Acids Research, 38(Database), D754&ndash;D764. doi:10.1093/nar/gkp832&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/gemina/archive/5eed2df8c54c28473f1739a593c1f9720874ec57.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:26.023Z&nbsp;&nbsp; &nbsp;27bb8501aaedf31e4e23435521840944701b8c3154ae480da3f7bd6298fc214b&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/global-mammal-parasite-database&nbsp;&nbsp; &nbsp;Stephens, P. R., Pappalardo, P. , Huang, S. , Byers, J. E., Farrell, M. J., Gehman, A. , Ghai, R. R., Haas, S. E., Han, B. , Park, A. W., Schmidt, J. P., Altizer, S. , Ezenwa, V. O. and Nunn, C. L. (2017), Global Mammal Parasite Database version 2.0. Ecology, 98: 1476-1476. doi:10.1002/ecy.1799&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/global-mammal-parasite-database/archive/64a74bd34820b94dc3bd2fb4f5fe05e1a2c69614.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:31.983Z&nbsp;&nbsp; &nbsp;3eb5450f955b9eceaee04899ef73e422ce281a4fd68e98ecbf8c69f34f1c5126&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/global-primate-parasite-database&nbsp;&nbsp; &nbsp;Stephens, P. R., Pappalardo, P. , Huang, S. , Byers, J. E., Farrell, M. J., Gehman, A. , Ghai, R. R., Haas, S. E., Han, B. , Park, A. W., Schmidt, J. P., Altizer, S. , Ezenwa, V. O. and Nunn, C. L. (2017), Global Mammal Parasite Database version 2.0. Ecology, 98: 1476-1476. doi:10.1002/ecy.1799&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/global-primate-parasite-database/archive/8837950cc35217c48eb7ecd6de7e70df0ea8a15b.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:38.752Z&nbsp;&nbsp; &nbsp;ff342f95706a1c203dadfe4faf00774e5afc2a1ffe85c443fc002756d806286a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/globalwebdb&nbsp;&nbsp; &nbsp;Global Web Database (http://globalwebdb.com): an online collection of food webs. Accessed via https://www.globalwebdb.com/Service/DownloadArchive on 2017-10-12.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/globalwebdb/archive/12f2c1ad026e634aea47dc40c0a5e9d463165058.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:12:56.614Z&nbsp;&nbsp; &nbsp;069f85826f0d0abcd662f027b6b9b1c5e246570cdb9d75f0546804430ab14f66&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/grange2021&nbsp;&nbsp; &nbsp;Grange, Z.L. et al., 2021. Ranking the risk of animal-to-human spillover for newly discovered viruses. Proceedings of the National Academy of Sciences, 118(15), p.e2002324118. Available at: http://dx.doi.org/10.1073/pnas.2002324118.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/grange2021/archive/746b67a0cece1c5cd71ef5d9a6a393948e816d8a.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:02.744Z&nbsp;&nbsp; &nbsp;2d3bfbf3731fb794d7eb043aa8199c13ceb5bb4dbdc215dee63d709d4499403e&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/gray2015&nbsp;&nbsp; &nbsp;Gray C, Ma A, Perkins D, Hudson L, Figueroa D, Woodward G (2015). Database of trophic interactions. Zenodo. https://doi.org/10.5281/zenodo.13751&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/gray2015/archive/95bfd96cc46e5d58482fd2bdad0677eeb74ba0f4.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:15.619Z&nbsp;&nbsp; &nbsp;ad8440e20e4bfb0fe8d9a36b1b20793060235eed67bdb2f62a5d9e18e7b874bc&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/gryseels2020&nbsp;&nbsp; &nbsp;Gryseels, S., De Bruyn, L., Gyselings, R., Calvignac‐Spencer, S., Leendertz, F.H. and Leirs, H. (2020), Risk of human‐to‐wildlife transmission of SARS‐CoV‐2. Mam. Rev.. https://doi.org/10.1111/mam.12225&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/gryseels2020/archive/10002f72023222002ff20833cba43ec5871092cc.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:21.481Z&nbsp;&nbsp; &nbsp;b9fedfe0a86e7ee08aedc04aa362d7b3290534d7982e70b695146257f344dfe2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/hafner&nbsp;&nbsp; &nbsp;Shan Kothari, Pers. Comm. 2014. Dataset extracted by Shan Kothari from: Mark S. Hafner, Philip D. Sudman, Francis X. Villablanca, Theresa A. Spradling, James W. Demastes, Steven A. Nadler. (1994). Disparate Rates of Molecular Evolution in Cospeciating Hosts and Parasites. Science 265: 1087-1090.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/hafner/archive/72923f0d28b3fbe63c9a199865a131cffedf2877.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:26.891Z&nbsp;&nbsp; &nbsp;bdbbf4fba2a23ce17b5863d31b9de4752d30eddeb379601071942984ca66f196&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/hechinger2011&nbsp;&nbsp; &nbsp;Ryan F. Hechinger, Kevin D. Lafferty, John P. McLaughlin, Brian L. Fredensborg, Todd C. Huspeni, Julio Lorda, Parwant K. Sandhu, Jenny C. Shaw, Mark E. Torchin, Kathleen L. Whitney, and Armand M. Kuris 2011. Food webs including parasites, biomass, body sizes, and life stages for three California/Baja California estuaries. Ecology 92:791&ndash;791. https://doi.org/10.1890/10-1383.1 .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/hechinger2011/archive/28e6836db3fe18d17e029187971d94e9af8bf9d1.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:33.057Z&nbsp;&nbsp; &nbsp;446c616889bfdf5ef1a9e82ce8790565e168aedabce4b1e37246ff517dc7ffce&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/hoenle2019&nbsp;&nbsp; &nbsp;Hoenle, P.O. et al., 2019. Species‐level predation network uncovers high prey specificity in a Neotropical army ant community. Molecular Ecology, 28(9), pp.2423&ndash;2440. Available at: http://dx.doi.org/10.1111/mec.15078.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/hoenle2019/archive/74cc15a3473e1354fc6cf424688221b1de777afc.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:37.890Z&nbsp;&nbsp; &nbsp;09fedaa28bbe19e2b428bec6f44eec8a9b0f1ca92986811b069293c38f987bf2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ices&nbsp;&nbsp; &nbsp;International Council for the Exploration of the Sea (ICES). Year of The Stomach Datasets.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ices/archive/c2df6d82d5b49de5ac5567e6022c405d4507b3cc.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:13:43.381Z&nbsp;&nbsp; &nbsp;693e9b4794d8cb0aaa67e16e1583e4ccb0662a92572ed10912e50edd1c873968&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/inhs-insects&nbsp;&nbsp; &nbsp;Illinois Natural History Survey Insect Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/inhs-insects/archive/38692496f590577074c7cecf8ea37f85d0594ae1.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:14:59.067Z&nbsp;&nbsp; &nbsp;d3e25559e726bcd1e48024f406175898c20b64e9bbf3806f35bbd9c23db961e5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/jeucht2021&nbsp;&nbsp; &nbsp;Laura van der Jeught &amp; Quentin Groom. 2021. Observations of humans handling bats with gloves or bare hands.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/jeucht2021/archive/aaa641879d2b5085a45bdc7f208a3795de5ac8d5.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:21.226Z&nbsp;&nbsp; &nbsp;98ddafbaaca6f85ae6ffdabb76863fc8b77b6340acd70b7d9ff260db6f173ec1&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/jeught2021&nbsp;&nbsp; &nbsp;Laura van der Jeught &amp; Quentin Groom. 2021. Observations of humans handling bats with gloves or bare hands.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/jeught2021/archive/aaa641879d2b5085a45bdc7f208a3795de5ac8d5.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:26.215Z&nbsp;&nbsp; &nbsp;98ddafbaaca6f85ae6ffdabb76863fc8b77b6340acd70b7d9ff260db6f173ec1&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/jorissen2020&nbsp;&nbsp; &nbsp;Jorissen, M.W.P., Huyse, T., Pariselle, A. et al. Historical museum collections help detect parasite species jumps after tilapia introductions in the Congo Basin. Biol Invasions (2020). https://doi.org/10.1007/s10530-020-02288-4&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/jorissen2020/archive/bd6e37f5a0a80ca678d36bf94d9e39a4f168ba09.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:32.266Z&nbsp;&nbsp; &nbsp;ffc82fc74ce548e8afd4abef0d49f996378b3d0b0c8ac8dc76260de10c608990&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/jsonld-template-dataset&nbsp;&nbsp; &nbsp;Chris Mungall. 2015. Example of sharing species interactions data in JSON-LD.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3988628/files/globalbioticinteractions/jsonld-template-dataset-v0.3.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:37.712Z&nbsp;&nbsp; &nbsp;b90f454b7b3e4a5a53ff74fa89ecb422e843604e8bac428faa54f8e65ee11f62&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/kelpforest&nbsp;&nbsp; &nbsp;Beas-Luna, R., A. Black, M. Novak, M. Carr, J. Caselle, J. Estes, P. Levin, T. Tinker. (2014) An online database of species interactions for informing ecosystem models http://kelpforest.ucsc.edu. PlosOne PONE-D-14-18906R1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/kelpforest/archive/a20ce900fc3b18bc849f0521227c0ab890e8e765.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:42.272Z&nbsp;&nbsp; &nbsp;aefa506f714f88e4abd68a50a9c6a6c9b1f7b0803a33ac2d0307a577d13c3cae&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/known-projects&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2017. Species interactions associated with known species interaction datasets.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/known-projects/archive/c85871e495988d50bd37ba0c04d2eec6497acb4d.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:52.048Z&nbsp;&nbsp; &nbsp;a77a6c3f8d499b79e0e825d47132c7349fb49b6c9ee13dce9ce2919dbf19e5b3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ku-semc&nbsp;&nbsp; &nbsp;University of Kansas Natural History Museum&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ku-semc/archive/5180d6904c8e1e6be12897bae9c1c7c650da3ab9.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:15:56.135Z&nbsp;&nbsp; &nbsp;ec50cf8c850ea2e4a2a8dae698fe7ab9e8b74423e6e685af9b467b93dee0ad8d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/lacm-lacmec&nbsp;&nbsp; &nbsp;Natural History Museum of Los Angeles County&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/lacm-lacmec/archive/216b0e456b1974cdc52b455a403346db9b6fe875.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:01.333Z&nbsp;&nbsp; &nbsp;b51428e078c6d1b361a6ba2e953b997ef63be72ebfe6a739d0d74fbcbcd02316&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/lamanna2020&nbsp;&nbsp; &nbsp;LaManna, JA, Burkle, LA, Belote, RT, Myers, JA. Biotic and abiotic drivers of plant&ndash;pollinator community assembly across wildfire gradients. J Ecol. 2020; 00: 1&ndash; 14. https://doi.org/10.1111/1365-2745.13530 .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/lamanna2020/archive/f8f0791ae6261bf65eee5156413c5c3a370a4359.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:07.541Z&nbsp;&nbsp; &nbsp;a5ce2810f75bb0d4cc6f4f7be1d9a26c50534eb3fb9f5f9e49ca3eeaf7dd4746&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/life-watch-greece&nbsp;&nbsp; &nbsp;Faulwetter S, Markantonatou V, Pavloudi C, Papageorgiou N, Keklikoglou K, Chatzinikolaou E, Pafilis E, Chatzigeorgiou G, Vasileiadou K, Dailianis T, Fanini L, Koulouri P, Arvanitidis C (2014) Polytraits: A database on biological traits of marine polychaetes. Biodiversity Data Journal 2: e1024. doi:10.3897/BDJ.2.e1024 . Available at http://polytraits.lifewatchgreece.eu.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/life-watch-greece/archive/8459beebe62fb55450ea0c3b223668a782f2dd7d.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:15.718Z&nbsp;&nbsp; &nbsp;8e1d23cb3f5a224879225e942a3c0f07f2f05752f6a1b7f34beb82cc4eb9be22&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/light2019&nbsp;&nbsp; &nbsp;Light, J.E., Eckerlin, R.P. &amp; Durden, L.A., 2019. Checklist of ectoparasites of Canidae and Felidae in M&eacute;xico. Therya, 10(2), pp.109&ndash;119. Available at: https://doi.org/10.12933/therya-19-784.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/light2019/archive/6d859cc1ce6aba52144b9a43237f1adf5ac17dd4.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:20.628Z&nbsp;&nbsp; &nbsp;b4bd55aba7dc3ea48617386159fcc08016689fb6c0630d7f47de307dd740ad97&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/linnaeus1758&nbsp;&nbsp; &nbsp;Agosti, Donat. 2020. Transcription of Linné, C. von, 1758. Systema naturae per regna tria naturae secundum classes, ordines, genera, species, cum characteribus, differentiis, synonymis, locis. Available at: http://dx.doi.org/10.5962/bhl.title.542 .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/linnaeus1758/archive/a818060080fa04a88dac6df1ae5b897304ae8877.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:26.645Z&nbsp;&nbsp; &nbsp;b9da2286e5419cfb64b09604eabb7c73a4955d63732523093233e537c8767186&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/lupinus-nipomensis-interactions-2017&nbsp;&nbsp; &nbsp;Justin Luong. 2017. Lupinus nipomensis arthropod association study.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/lupinus-nipomensis-interactions-2017/archive/0a70dc845243d877361c69d821442ce2b2777f2c.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:33.419Z&nbsp;&nbsp; &nbsp;0ee9e3f52968f672947d27c4e25f1788e0bad78ccbf3ddb2e653191e2d0e82ee&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/malavi&nbsp;&nbsp; &nbsp;BENSCH, S., HELLGREN, O. and P&Eacute;REZ‐TRIS, J. (2009), MalAvi: a public database of malaria parasites and related haemosporidians in avian hosts based on mitochondrial cytochrome b lineages. Molecular Ecology Resources, 9: 1353-1358. https://doi.org/10.1111/j.1755-0998.2009.02692.x&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/malavi/archive/cf0190bb76f5c2150e4db425be7d5d12bd65fe1a.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:16:37.745Z&nbsp;&nbsp; &nbsp;1a48e9b350c345fef79401c443c8a21166fcc31f6f93428d96bfec3a27013792&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mangal&nbsp;&nbsp; &nbsp;https://mangal.io - the ecological interaction database.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mangal/archive/496346227463f7003c1e4e6620693325b4cb294d.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:17:51.582Z&nbsp;&nbsp; &nbsp;aab72fcdb24565b15b4127cf603f3e68854a69fbba5859198f00642605f4e59e&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mcz&nbsp;&nbsp; &nbsp;Harvard University M, Morris P J (2021). Museum of Comparative Zoology, Harvard University. Museum of Comparative Zoology, Harvard University.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mcz/archive/b33635a9fc75fd7931ad968cbc11180e6467bfd7.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:30:00.966Z&nbsp;&nbsp; &nbsp;04a214d42105ae302af82c6f72fcbe45ab09a147423c3b4f1e6d382750d87abd&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/min-umsp&nbsp;&nbsp; &nbsp;UMSP / University of Minnesota / University of Minnesota Insect Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/min-umsp/archive/ea14a3d2655fbb0504597ec60a6d3d86b06b1823.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:33:43.140Z&nbsp;&nbsp; &nbsp;9b521f8e1f86cea8c9ea951a86f9bf39f288dde7060d5b96cf435462c8706318&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mollentze2019&nbsp;&nbsp; &nbsp;Mollentze, Nardus, &amp; Streicker, Daniel G. (2019). Viral zoonotic risk is homogenous among taxonomic orders of mammalian and avian reservoir hosts (Version 1.0.0) [Data set]. Zenodo. http://doi.org/10.5281/zenodo.3516613&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mollentze2019/archive/ad12dc74d03c3d992618f16c37cafb7f7ffd9d01.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:33:55.579Z&nbsp;&nbsp; &nbsp;126d34d09dca682373d528913c3bd4e0b978185c6026f9b31700e563e602e198&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mouritsen2011&nbsp;&nbsp; &nbsp;Kim N. Mouritsen, Robert Poulin, John P. McLaughlin and David W. Thieltges. 2011. Food web including metazoan parasites for an intertidal ecosystem in New Zealand. Ecology 92:2006.&nbsp; https://doi.org/10.1890/11-0371.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mouritsen2011/archive/a2a1e658b35c2add5b6cacd63746c2815cf7083e.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:34:00.377Z&nbsp;&nbsp; &nbsp;fbf6da16d87366912c5cc92e3dda8e6ad52a2901af7f2ba22e7b413676a7ad23&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mpm&nbsp;&nbsp; &nbsp;Milwaukee Public Museum Biological Collections Data Portal&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mpm/archive/9f44e99c49ec5aba3f8592cfced07c38d3223dcd.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:34:15.952Z&nbsp;&nbsp; &nbsp;5a9f08e21c44bf4450b3bc9715ea0cd55f5951be9d923765f2063460d0ecc5ef&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/msb-host&nbsp;&nbsp; &nbsp;The MSB Division of Parasitology Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/msb-host/archive/d7640695a903efd81acbaf494267ae2676e3a6e1.zip&nbsp;&nbsp; &nbsp;2021-11-13T00:34:25.461Z&nbsp;&nbsp; &nbsp;f4e23b8d634d4e8e6af7ba8b1f4630e2cce50e83b959fd2762797ff95c68e868&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/msu-msuc&nbsp;&nbsp; &nbsp;The Albert J. Cook Arthropod Research Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/msu-msuc/archive/38960906380443bd8108c9e44aeff4590d8d0b50.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:23:02.030Z&nbsp;&nbsp; &nbsp;f1c1de76413bece7cc53a4838049b46eb17177960faebba685833f43f8a3adcf&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mycodb&nbsp;&nbsp; &nbsp;Chaudhary, V. B., R&uacute;a, M. A., Antoninka, A., Bever, J. D., Cannon, J., Craig, A., &hellip; Hoeksema, J. D. (2016). MycoDB, a global database of plant response to mycorrhizal fungi. Scientific Data, 3, 160028. doi:10.1038/sdata.2016.28&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mycodb/archive/80a9030368f1a3a3070fe92ebef577a62ee04d25.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:23:20.590Z&nbsp;&nbsp; &nbsp;a88faf69b0e4f441cc6e16b9b9dcd2ded1e5abb38d76c77665418c4ef81bbc76&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/mycoportal&nbsp;&nbsp; &nbsp;Mycology Collections Data Portal (MyCoPortal). 2020. https://mycoportal.org&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/mycoportal/archive/375a26416ad05b5397dc6e525b3d0f1df94e0cc2.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:23:38.243Z&nbsp;&nbsp; &nbsp;200678c52a143953dcc2f39cccf78ee2ab086f649642d16815f6c451ca9b5827&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/natural-history-museum-london-interactions-bank&nbsp;&nbsp; &nbsp;Ed Baker; Ian J. Kitching; George W. Beccaloni; Amoret Whitaker et al. (2016). Dataset: NHM Interactions Bank. Natural History Museum Data Portal (data.nhm.ac.uk). https://doi.org/10.5519/0060767&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/natural-history-museum-london-interactions-bank/archive/8268bbbabd865dc1c1951083f56988b23dabbae7.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:24:34.089Z&nbsp;&nbsp; &nbsp;1fef6ad58c57b3ab1e277aebe6e0e2efec29cac955191030c2596967f29f6be2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/neon-biorepo&nbsp;&nbsp; &nbsp;NEON Biorepository Portal at Arizona State University (ASU)&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/neon-biorepo/archive/655087ad0f78f06a215228d16fa6f9ae7130e529.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:40:26.687Z&nbsp;&nbsp; &nbsp;266037b55736f05ec819caabdd3997164e4b3b84aa869b6376f23e4cae69b3a5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/noaa-reem&nbsp;&nbsp; &nbsp;Alaska Fisheries Science Center, 2021: AFSC/REFM: North Pacific Groundfish Diet Data 1981-present, Aydin, K., https://www.fisheries.noaa.gov/inport/item/20485. Resource Ecology and Ecosystem Modeling (REEM) - Groundfish Diet Data of Aleutian Islands, Alaska Fisheries Science Center, NOAA; Alaska Fisheries Science Center, 2021: AFSC/REFM: North Pacific Groundfish Diet Data 1981-present, Aydin, K., https://www.fisheries.noaa.gov/inport/item/20485. Resource Ecology and Ecosystem Modeling (REEM) - Groundfish Diet Data of Gulf of Alaska, Alaska Fisheries Science Center, NOAA; Alaska Fisheries Science Center, 2021: AFSC/REFM: North Pacific Groundfish Diet Data 1981-present, Aydin, K., https://www.fisheries.noaa.gov/inport/item/20485. Resource Ecology and Ecosystem Modeling (REEM) - Groundfish Diet of Data Bering Sea, Alaska Fisheries Science Center, NOAA&nbsp;&nbsp; &nbsp;https://zenodo.org/record/5181449/files/globalbioticinteractions/noaa-reem-v0.2.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:41:34.379Z&nbsp;&nbsp; &nbsp;0a427dca06cbea14ca4e4d7b39438ad60ef901d257a13ce6594f8f22291a7c12&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/olival2017&nbsp;&nbsp; &nbsp;Olival, K. J., Hosseini, P. R., Zambrana-Torrelio, C., Ross, N., Bogich, T. L., &amp; Daszak, P. (2017). Host and viral traits predict zoonotic spillover from mammals. Nature, 546(7660), 646&ndash;650. doi:10.1038/nature22975&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/olival2017/archive/ab6489f1d048fa8bbc8488549444fda33f290d0a.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:41:55.717Z&nbsp;&nbsp; &nbsp;823319fc1cdf2351f1ef7a1281bb5808423d55da44734f6542fe83f5fc351371&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/olivier2019&nbsp;&nbsp; &nbsp;Olivier, Pierre et al. (2019), Exploring the temporal variability of a food web using long‐term biomonitoring data, Wiley, Article-journal, https://doi.org/10.1111/ecog.04461&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/olivier2019/archive/f0b3b30756aa536ebb75855cbf40cb89aaf173bf.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:42:00.536Z&nbsp;&nbsp; &nbsp;c566a26023ba39501ca706bfdef80d42841919053c91fca57b19dfd807bcfdf8&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/osal-ar&nbsp;&nbsp; &nbsp;Ohio State University Acarology Laboratory&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/osal-ar/archive/876269d66a6a94175dbb6b9a604897f8032b93dd.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:42:04.727Z&nbsp;&nbsp; &nbsp;207f119817c41eda546a4ba34b8298eade3c73193696cb42cd6c96cbf70655d7&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pensoft-dwca&nbsp;&nbsp; &nbsp;Pensoft Darwin Core Archives with associateTaxa columns&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pensoft-dwca/archive/ee8831a2a391203f4fa8c05a0ddd927202b234bf.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:42:17.554Z&nbsp;&nbsp; &nbsp;dd308359e12eec25dc39a87f3a727092916a8e2276fa2bda7fa13dec42831adf&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pensoft-ipt&nbsp;&nbsp; &nbsp;Pensoft Darwin Core Archives available via Integrated Publication Toolkit&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pensoft-ipt/archive/4ad4b47978324681289e36f8c2b247b1bcc97b1a.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:46:32.496Z&nbsp;&nbsp; &nbsp;b14f6dabbb571955129fe64ae362df237273702d980fa6853577170dad337ab5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pensoft-table&nbsp;&nbsp; &nbsp;De Rojas M, Do&ntilde;a J, Dimov I (2020) A comprehensive survey of Rhinonyssid mites (Mesostigmata: Rhinonyssidae) in Northwest Russia: New mite-host associations and prevalence data. Biodiversity Data Journal 8: e49535. https://doi.org/10.3897/BDJ.8.e49535&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pensoft-table/archive/3488e0397ca4e083d5eca6949951e426a75713e3.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:46:37.435Z&nbsp;&nbsp; &nbsp;06fb268eacb8c31bd6ba9bcf8046f1322284c7aab63fcb99793e8384f6e4c83b&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/planque2014&nbsp;&nbsp; &nbsp;Benjamin Planque, Raul Primicerio, Kathrine Michalsen, Michaela Aschan, Gr&eacute;goire Certain, Padmini Dalpadado, Harald Gj&oslash;s&aelig;ater, Cecilie Hansen, Edda Johannesen, Lis Lindal J&oslash;rgensen, Ina Kolsum, Susanne Kortsch, Lise-Marie Leclerc, Lena Omli, Mette Skern-Mauritzen, and Magnus Wiedmann 2014. Who eats whom in the Barents Sea: a food web topology from plankton to whales. Ecology 95:1430&ndash;1430. https://doi.org/10.1890/13-1062.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/planque2014/archive/0994e910009d44fe2effb51a354927ef6302cd26.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:46:45.884Z&nbsp;&nbsp; &nbsp;f51b20d44f1a4dc31f6e2fa9814d6efc4fb2b6de4ffd859b1c7781fa9485813d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/plazi-covid19&nbsp;&nbsp; &nbsp;Marcus Guidoti, Tatiana Ruschel, Donat Agosti. 2020. Corona virus related biotic associations manually extracted from literature. Plazi.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/plazi-covid19/archive/326578b0d9f974760dcd2e962d86636a6487a6c0.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:46:50.243Z&nbsp;&nbsp; &nbsp;1e5da6ca583b4fb76ecbf3a09fb25ae2f16fd483345ca729911ae009e4d46ae3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pocock2012&nbsp;&nbsp; &nbsp;Pocock, Michael J. O.; Evans, Darren M.; Memmott, Jane (2012), Data from: The robustness and restoration of a network of ecological networks, Dryad, Dataset, https://doi.org/10.5061/dryad.3s36r118&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pocock2012/archive/be57f1d26a208fb4b2adfad72e17a3b88abe5bf9.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:46:56.903Z&nbsp;&nbsp; &nbsp;13274e0bc67bb45319b4e15c36b280e03d880f39491bd88cbe3919cc1e8f413a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pocock2021&nbsp;&nbsp; &nbsp;Pocock, Michael J.O., Schmucki, Reto, &amp; Bohan, David A. (2020). Inferring quantitative species interactions of seeds and seed-feeding carabid beetles from ecological survey data [Data set]. Zenodo. https://doi.org/10.5281/zenodo.4252783&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pocock2021/archive/640388beda95447a7c35fd9e98b9c0faa38028cd.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:47:04.058Z&nbsp;&nbsp; &nbsp;414ea4288ad26c69c43b3f8ee36764f27f2493499d7758c2b718ed301cb2d297&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pollination_catalogue&nbsp;&nbsp; &nbsp;Giselle Muschett &amp; Francisco E. Font&uacute;rbel. 2021. A comprehensive catalogue of plant &ndash; pollinator interactions for Chile&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pollination_catalogue/archive/d5cce1864ec2d1164c392d07f6ac118e142bb7da.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:47:09.788Z&nbsp;&nbsp; &nbsp;2e538b940327e94529a430015668bbef81e9c59870d256b25fd32dc4eacb174a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pozsgai2021&nbsp;&nbsp; &nbsp;Pozsgai, G., Ben Fekih, I., Kohnen, M.V. et al. Associations between carabid beetles and fungi in the light of 200 years of published literature. Sci Data 8, 294 (2021). https://doi.org/10.1038/s41597-021-01072-w&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pozsgai2021/archive/a9a7fba047125c1b4e921c84ddc69d3d6a932718.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:47:14.648Z&nbsp;&nbsp; &nbsp;b747c98cf1b46c4b7bd1f11754777f373daeff7c354a59f21a488a0669c2a468&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/preston2012&nbsp;&nbsp; &nbsp;Daniel L. Preston, Sarah A. Orlofske, John P. McLaughlin, and Pieter T. J. Johnson. 2012. Food web including infectious agents for a California freshwater pond. Ecology 93:1760. https://doi.org/10.1890/11-2194.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/preston2012/archive/10676b041317d933f16c089b819f6669da42396b.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:47:21.207Z&nbsp;&nbsp; &nbsp;168fe500cb70da3642ee8fa65ec7300e55dc1c5c25f680fb2a9b9e60cd028a02&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/psuc-ento&nbsp;&nbsp; &nbsp;Frost Entomological Museum, Pennsylvania State University&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/psuc-ento/archive/30b1f96619a6e9f10da18b42fb93ff22cc4f72e2.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:47:42.319Z&nbsp;&nbsp; &nbsp;8a7fc654e7137b997ff258d3038a9c6e65747862492d4afbe4842c5126e1ebae&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/pu-perc&nbsp;&nbsp; &nbsp;Purdue Entomological Research Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/pu-perc/archive/e0909a7ca0a8df5effccb288ba64b28141e388ba.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:01.986Z&nbsp;&nbsp; &nbsp;91dfb04943f379056a71f045e25806eb42163eace0d6205434190c73600e1b39&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/raymond&nbsp;&nbsp; &nbsp;Raymond, B., Marshall, M., Nevitt, G., Gillies, C., van den Hoff, J., Stark, J.S., Losekoot, M., Woehler, E.J., and Constable, A.J. (2011) A Southern Ocean dietary database. Ecology 92(5):1188. Available from http://dx.doi.org/10.1890/10-1907.1 . Data set supplied by Ben Raymond.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/raymond/archive/a8bcc40af606e5677da715a3d1a8109178e8c998.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:11.347Z&nbsp;&nbsp; &nbsp;d5bd4a04ebb95e0b27c7c78f9a11dcf233e3985318390f1ddc95d9d3405c8008&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/reeder2021&nbsp;&nbsp; &nbsp;DeeAnn Reeder, Natalie Weber, Dina Dechman, Juliane Schaer, S&eacute;bastien Puechmaille, Wanda Markotter, Jack Sutton, and Martina Nagy 2021. Preliminary data on literature review of bat-virus associations.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/reeder2021/archive/c7095b451c36b232e5ad1b0cc90ed912c6fed31d.zip&nbsp;&nbsp; &nbsp;2021-11-15T23:12:08.633Z&nbsp;&nbsp; &nbsp;46511efff73d76d95ada988ad9ee25d7efb7fcca8904adbca12ee09dbc0e98cc&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/refuted-biotic-interactions-by-eol&nbsp;&nbsp; &nbsp;Katja Schulz. 2020. Collection of refuted species associations claims provided by Encyclopedia of Life.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/refuted-biotic-interactions-by-eol/archive/67dc570987c6897fca00b81247edbdb0b1861a36.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:16.391Z&nbsp;&nbsp; &nbsp;99c2c41e390f632cf9976c500b4010b664a069e344c79e2a5e07bce445140fed&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/refuted-interaction-data&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2019. Collection of refuted species associations claims.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/refuted-interaction-data/archive/bf6dedbd98f8f69e654cda6f27f27ca842b73a78.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:25.313Z&nbsp;&nbsp; &nbsp;baf974bac77526a4ec01edfe1bf5f859956226f16129975e2a590465e2c0109d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/robledo&nbsp;&nbsp; &nbsp;Garc&iacute;a-Robledo C, Erickson DL, Staines CL, Erwin TL, Kress WJ. Tropical Plant&ndash;Herbivore Networks: Reconstructing Species Interactions Using DNA Barcodes Heil M, editor. PLoS ONE [Internet]. 2013 January 8;8(1):e52967. Available from: http://dx.doi.org/10.1371/journal.pone.0052967&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/robledo/archive/79bdf611d65b0db0c8bca17ac91e33785111a57f.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:29.858Z&nbsp;&nbsp; &nbsp;f2f5fb7a60f17512d257b2dce5eb412d4d0ca507239d92e6edb5264ec1024e65&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/roopnarine&nbsp;&nbsp; &nbsp;Roopnarine, P. D., &amp; Hertog, R. (2013). Detailed Food Web Networks of Three Greater Antillean Coral Reef Systems: The Cayman Islands, Cuba, and Jamaica. Dataset Papers in Ecology, 2013, 1&ndash;9. doi:10.7167/2013/857470&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/roopnarine/archive/ae151d9e9b686d2ed73215ce50b81196bd66585f.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:35.994Z&nbsp;&nbsp; &nbsp;5abcae33dd04b7d25d97f7c2a426190ff6c63b78fefcb106f39feeecdec90770&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/rskm-owlpellet&nbsp;&nbsp; &nbsp;Frier D (2020): Royal Saskatchewan Museum - Owl Pellet Collection. v2.1. Royal Saskatchewan Museum. Dataset/Occurrence. https://doi.org/10.5886/f0xsbu&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/rskm-owlpellet/archive/ae69a4b244f9d2e050b656ea4240f791c72299a3.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:48:42.355Z&nbsp;&nbsp; &nbsp;67ed8b68152740dd70210a950adf386eae91c11a53534b36139db3dd0ee04181&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/saito2016&nbsp;&nbsp; &nbsp;Saito MU, Jinbo U, Yago M, Kurashima O, Ito M (2016) Larval host records of butterflies in Japan. Ecological Research 31: 491. doi:10.1007/s11284-016-1365-8&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/saito2016/archive/59c21ea94a3859dd212040cf0a92a2ce5de107db.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:49:02.635Z&nbsp;&nbsp; &nbsp;066a4ffad5297111cb7d27cd2be41b9e2e2c5fa5247b727da3fc69b11fc20b48&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/saproxylic&nbsp;&nbsp; &nbsp;Stokland, J.; Dahlberg, A.; Meyke, E.; Schigel, D.; Siitonen, J. (2006) The Nordic saproxylic database - a comprehensive overview of the biological diversity in dead wood. 1st European Congress of Conservation Biology - &quot;Diversity for Europe&quot;. August 2006, Hungary. Book of Abstracts. Society of Conservation Biology (USA) &amp; Blackwell Publishing (UK) p. 159 .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/saproxylic/archive/19d5c932d77059f5ef3d6134e1539f0bbab460e7.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:49:20.808Z&nbsp;&nbsp; &nbsp;8abe998264d163be9300893acfd59be4e28f5ec092ea45f7b89f74b8179d8e47&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/sawflies&nbsp;&nbsp; &nbsp;Andrew J Green. 2020. Larval Foodplants of British and Irish Sawflies. Accessed via https://www.sawflies.org.uk/wp-content/uploads/2019/04/Symphyta-larval-foodplants-latest-version.xlsx on 2020-12-28.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/sawflies/archive/22cdc964a4c281c3130c7225ce63ea9b4b70e5ce.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:49:27.441Z&nbsp;&nbsp; &nbsp;890c63b3f2766681a9acb55189a44ec513d51c51c5881648aad731d03ff8ece9&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/scan&nbsp;&nbsp; &nbsp;Symbiota Collections of Arthropods Network (SCAN)&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/scan/archive/a27cc20410daa12d736914bf66d86f65911d762c.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:59:31.907Z&nbsp;&nbsp; &nbsp;5da3cf42f823d45efeabe96fa35e43697837913d9a8ea62bfa7a1e507d5a2a64&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/sdnhm-sdmc&nbsp;&nbsp; &nbsp;San Diego Natural History Museum&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/sdnhm-sdmc/archive/7238d8b804f543250eb487b43144e1125fb3688a.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:00:01.179Z&nbsp;&nbsp; &nbsp;045c0ec86487b73de58a74a61ed5b14a94c7618275a11e4c54745b076c4f9137&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/sealifebase&nbsp;&nbsp; &nbsp;Palomares, M.L.D. and D. Pauly. Editors. 2018. SeaLifeBase. World Wide Web electronic publication. www.sealifebase.org, version (10/2018).&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/sealifebase/archive/d613f898a00ebaf4555eff844a71550435038e81.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:00:29.406Z&nbsp;&nbsp; &nbsp;52ab3e23a08813afa7e4e78955c75d4c8f4f4e8bf0d98b76bd1429ccf218b3ef&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/seinet&nbsp;&nbsp; &nbsp;Southwest Environmental Information Network (SEINet)&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/seinet/archive/baa53c99e22b5cf09fdfdaaae99612ee746c4d84.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:07.773Z&nbsp;&nbsp; &nbsp;f537da655fb85007e903e103b9b6329b593356a1f208f44039d3c0b758cb1378&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/shaw2020&nbsp;&nbsp; &nbsp;Shaw, LP, Wang, AD, Dylus, D, et al. The phylogenetic range of bacterial and viral pathogens of vertebrates. Mol Ecol. 2020; 29: 3361&ndash; 3379. https://doi.org/10.1111/mec.15463&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/shaw2020/archive/bb9ab857b7fdbb4e931752d01b43d37b3ada77cf.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:18.002Z&nbsp;&nbsp; &nbsp;bf7ada25d888b576956dce581229ada82e9f2e574fe499cbf9e2829ba514b3f7&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/siad&nbsp;&nbsp; &nbsp;Species Interactions of Australia Database (SIAD): Helping us to understand species interactions in Australia and beyond. http://www.discoverlife.org/siad/ .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/siad/archive/e0f252a567f5610e978f85981cb3a2e76f09b20c.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:25.483Z&nbsp;&nbsp; &nbsp;dd67e6caa048626863c823eb775aae8eedd46fcba3dad5e525aa62b85d5f5db4&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/species-interaction-dataset-inventory&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2017. Species interactions associated with known species interaction datasets.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/species-interaction-dataset-inventory/archive/c85871e495988d50bd37ba0c04d2eec6497acb4d.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:37.857Z&nbsp;&nbsp; &nbsp;a77a6c3f8d499b79e0e825d47132c7349fb49b6c9ee13dce9ce2919dbf19e5b3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/speciesconnect&nbsp;&nbsp; &nbsp;Species Connect. https://speciesconnect.com&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/speciesconnect/archive/c3c6f45f0864cd9d7fb4f281f69669cc5516cbfd.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:30.907Z&nbsp;&nbsp; &nbsp;e5972dfc20a1b44f735d0eab0c3ba80ed1a1d4bb697a431ca9599f47ba99eeec&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/spire&nbsp;&nbsp; &nbsp;Semantic Prototypes in Research Ecoinformatics (SPIRE). Data provided by Joel Sachs. See also http://ebiquity.umbc.edu/get/a/publication/297.pdf .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/spire/archive/b2f52536ed93797820e4295fe1097310d37ddbaa.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:09:54.805Z&nbsp;&nbsp; &nbsp;cade082c1f6555cbff5ebd371d331581b74058931517f32f832d230245caba58&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/squamatabase&nbsp;&nbsp; &nbsp;Grundler MC (2020) SquamataBase: a natural history database and R package for comparative biology of snake feeding habits. Biodiversity Data Journal 8: e49943. https://doi.org/10.3897/BDJ.8.e49943&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/squamatabase/archive/98f4158c1d988fc6cb4bd944020fd1dcde961338.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:10:14.564Z&nbsp;&nbsp; &nbsp;b6060414b9cc244f764f8373cf95b812d0db58062064c97ccf530228b1f0b302&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/strona&nbsp;&nbsp; &nbsp;Strona, G., Palomares, M. L. D., Bailly, N., Galli, P., &amp; Lafferty, K. D. (2013). Host range, host ecology, and distribution of more than 11 800 fish parasite species. Ecology, 94(2), 544&ndash;544. doi:10.1890/12-1419.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/strona/archive/5b9f1fb08966d2f295b341509b8765002eaf0df1.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:10:21.615Z&nbsp;&nbsp; &nbsp;ca0fafe650f9b73adb07e1e637240017bc199587dbcb27553cd24f703d2c01c6&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/strong2014&nbsp;&nbsp; &nbsp;Strong, Justin S., and Shawn J. Leroux. 2014. &quot;Impact of Non-Native Terrestrial Mammals on the Structure of the Terrestrial Mammal Food Web of Newfoundland, Canada.&quot; PLOS ONE 9 (8): e106264. https://doi.org/10.1371/journal.pone.0106264&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/strong2014/archive/b1f9888c29c1bc657081f49ffa1a1c00434615f7.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:10:26.715Z&nbsp;&nbsp; &nbsp;c96b66532610b886b36acf8557b49468ccc16bbd5c2f3557908d0fe747a6376d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/szoboszlai2015&nbsp;&nbsp; &nbsp;Szoboszlai AI, Thayer JA, Wood SA, Sydeman WJ, Koehn LE (2015) Data from: Forage species in predator diets: synthesis of data from the California Current. Dryad Digital Repository. http://dx.doi.org/10.5061/dryad.nv5d2&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/szoboszlai2015/archive/189f0d2bdb23d6bc5166dd086a4d76e62a78da40.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:10:34.472Z&nbsp;&nbsp; &nbsp;ac776372828ec405829b4ae5dbb6e5eee23cdd3ff308a875c14a9b179337c54f&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/tamuic-ent&nbsp;&nbsp; &nbsp;Texas A&amp;M University Insect Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/tamuic-ent/archive/625c537abae5c9ea1f79aee2867fb541b2a2116b.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:10:39.402Z&nbsp;&nbsp; &nbsp;f5104355437144779ce2c1820493dd32b165d9f8355a2fe9bdea47f439247eb3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/1436853/files/globalbioticinteractions/template-dataset-0.0.3.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:00.559Z&nbsp;&nbsp; &nbsp;5b4ee64e7384bdf3d75b1d6617edd5d82124567b4ec52b47920ea332837ff060&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/thieltges2011&nbsp;&nbsp; &nbsp;David W. Thieltges, Karsten Reise, Kim N. Mouritsen, John P. McLaughlin, and Robert Poulin. 2011. Food web including metazoan parasites for a tidal basin in Germany and Denmark. Ecology 92:2005. https://doi.org/10.1890/11-0351.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/thieltges2011/archive/ea1981bced3ca60b556b5d7af8422a75b870d012.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:05.221Z&nbsp;&nbsp; &nbsp;8d783d24c2c759b0801d420929237025ff887a4e30c2d9924f342cc20a402dd5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/thomas-sabaj2020&nbsp;&nbsp; &nbsp;Thomas, M.R., &amp; M.H. Sabaj. 2020. Heptapteridae: Seven-finned Catfishes, In: M.L. Warren, Jr. &amp; B.M. Burr (eds.) with A.A. Echelle, B.R. Kuhajda &amp; S.T. Ross, Freshwater Fishes of North America: Characidae to Poeciliidae, vol. 2. The Johns Hopkins University Press, Baltimore, Maryland.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/thomas-sabaj2020/archive/6328a45cb914a436f5828a93de13d01363400021.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:10.655Z&nbsp;&nbsp; &nbsp;e13b0156731d63c732e83f5f26376f835245dde46bfbfa03ed1b1567835ed119&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/tmh-across-systems&nbsp;&nbsp; &nbsp;Cohen JM, Sauer EL, Santiago O, Spencer S, Rohr JR. 2020. Divergent impacts of warming weather on wildlife disease risk across climates. Science. doi:10.1126/science.abb1702&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/tmh-across-systems/archive/4dd4d0b5c4f301136380b87e34ce2adfa3adbb15.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:15.466Z&nbsp;&nbsp; &nbsp;18473f9beb06232523772f863060849b1f3e286812f91179ad5d0da1cc482fed&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ucm-ucmc&nbsp;&nbsp; &nbsp;University of Colorado Museum of Natural History Entomology Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ucm-ucmc/archive/c2a838bbf39e09b7e195b2895c107b2963167b20.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:31.517Z&nbsp;&nbsp; &nbsp;52525735b30c80128aec0598c5f4acecbf78eb1ccbef599f681b3f0d2115b2f0&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ucsb-ac&nbsp;&nbsp; &nbsp;University of California Santa Barbara Algae Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ucsb-ac/archive/21cc1ba9ded04f23f53bb1b66bf5bc638c9307c9.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:12:44.191Z&nbsp;&nbsp; &nbsp;0cf2ed4ac5dc84d135c36253e727c7e9cf6a1ebc3e5d681a9aca0886a4344ed7&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ucsb-cch&nbsp;&nbsp; &nbsp;University of California Santa Barbara Herbarium&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ucsb-cch/archive/b09de654491c765c193233e35050f347e892884b.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:13:03.149Z&nbsp;&nbsp; &nbsp;7ebddcaebaf2142d8568bb5cebf6677db63097a9ad657767589d26aaa58804a7&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ucsb-izc&nbsp;&nbsp; &nbsp;University of California Santa Barbara Invertebrate Zoology Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ucsb-izc/archive/864457bf411f2b01820f9ecfb11397e453bb6572.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:13:22.699Z&nbsp;&nbsp; &nbsp;25a069cf9ebeb7bf07b89dfc0afbd375515905333baee2a603c2befbcab0746a&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/uhim&nbsp;&nbsp; &nbsp;University of Hawaii Insect Museum&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/uhim/archive/53fa790309e48f25685e41ded78ce6a51bafde76.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:13:41.915Z&nbsp;&nbsp; &nbsp;d4bd19d501a1ae6cbbcafb34a9236b9239f3e5f6a9f226f6b240c922ea87f4ed&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ummzi&nbsp;&nbsp; &nbsp;University of Michigan Museum of Zoology Insect Division. Full Database Export 2020-11-20 provided by Erika Tucker and Barry Oconner.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ummzi/archive/4b5d7ef057db9841485d734738c601ac81b2f68a.zip&nbsp;&nbsp; &nbsp;2021-03-13T03:00:58.322Z&nbsp;&nbsp; &nbsp;886ee4dd3bf33c7fc3d83151cde0137aad961adde43627117061fb7e1ccf4408&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/unhc&nbsp;&nbsp; &nbsp;University of New Hampshire Collection of Insects and other Arthropods&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/unhc/archive/a9a3ba395651a1e068ef53d47a6e2c8e1173389c.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:13:57.621Z&nbsp;&nbsp; &nbsp;e3e080b20f3652cd7b3b8997dfd777ad5e8c16221444cb43dd5c33eab1582063&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/unhc-unhc&nbsp;&nbsp; &nbsp;University of New Hampshire Donald S. Chandler Entomological Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/unhc-unhc/archive/d7668a6bb4545dc4da0645ecc383169ba547b0f5.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:14:10.171Z&nbsp;&nbsp; &nbsp;e049199519873802caa7c2c74945a902bf6678a0cd603bc5ebe810d1e51957a3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/unl-nsm&nbsp;&nbsp; &nbsp;Scott L. Gardner and Gabor R. Racz (2021). University of Nebraska State Museum - Parasitology. Harold W. Manter Laboratory of Parasitology. University of Nebraska State Museum.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/unl-nsm/archive/6bcd8aec22e4309b7f4e8be1afe8191d391e73c6.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:14:17.278Z&nbsp;&nbsp; &nbsp;ba1726e355149e1893ee7742c5cab0e0ce963f04bd19ee19ef6ba24d26e1f63d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/uredinales-belgium-checklist&nbsp;&nbsp; &nbsp;Vanderweyen A, Fraiture A, Groom Q, Desmet P, Reyserhove L (2019). Catalogue of the Rust Fungi of Belgium. Botanic Garden Meise.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/uredinales-belgium-checklist/archive/43fd7a8344b4157e1e2f9e7351c3219492ecdd62.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:14:39.867Z&nbsp;&nbsp; &nbsp;5952f67ce00c6e4e138df5f9eb7b8212ecc53eda133087e23910acb7244281ed&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/usgs-bison&nbsp;&nbsp; &nbsp;USGS Biodiversity Information Serving Our Nation (BISON) IPT&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/usgs-bison/archive/7be50b704e4ef0d1f685d80b4e1b5c0e98e2e260.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:35:06.122Z&nbsp;&nbsp; &nbsp;d06e463218648f6eac3aaa71277866b7644989d50b4a41b60d5206e64888b9a5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/usgs-pollinator-library&nbsp;&nbsp; &nbsp;United States Geological Survey (USGS) Pollinator Library. https://www.npwrc.usgs.gov/pollinator.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/usgs-pollinator-library/archive/608cbc37572475bbd61dd0d2fb6e9ce29cf95600.zip&nbsp;&nbsp; &nbsp;2021-11-13T02:35:11.568Z&nbsp;&nbsp; &nbsp;dfc9317dfb657914f18ddefc9506cfc6229ef761a0d49cb5dc201424c48f6d72&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/utah-piper&nbsp;&nbsp; &nbsp;Price Institute of Parasite Research, School of Biological Sciences, University of Utah&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/utah-piper/archive/43da8db550b5776c1e3d17803831c696fe9b8285.zip&nbsp;&nbsp; &nbsp;2021-11-13T03:34:23.597Z&nbsp;&nbsp; &nbsp;7a6b77bdd41825ca03becb1c75b50f276443a97775a7c7741e4daf3fed9b873d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/uwsp-para&nbsp;&nbsp; &nbsp;University of Wisconsin Stevens Point, Stephen J. Taft Parasitological Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/uwsp-para/archive/f9d0d52cd671731c7f002325e84187979bca4a5b.zip&nbsp;&nbsp; &nbsp;2021-11-13T03:34:31.713Z&nbsp;&nbsp; &nbsp;77269a76cc9cd288d5d4dfc2cc97be0bc27d180f9c67a6700dd4b864ef50cca3&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/vectorbase&nbsp;&nbsp; &nbsp;Giraldo-Calder&oacute;n, G. I., Emrich, S. J., MacCallum, R. M., Maslen, G., Dialynas, E., Topalis, P., &hellip; Lawson, D. (2015). VectorBase: an updated bioinformatics resource for invertebrate vectors and other organisms related with human diseases. Nucleic acids research, 43(Database issue), D707&ndash;D713. doi:10.1093/nar/gku1117.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/vectorbase/archive/00d6285cd4e9f4edd18cb2778624ab31b34b23b8.zip&nbsp;&nbsp; &nbsp;2021-11-13T03:34:38.444Z&nbsp;&nbsp; &nbsp;97de6d8a4da8cb6b091dcbef550a35d75bc858cf3e647b132ffb6c175b05a287&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/virion&nbsp;&nbsp; &nbsp;Carlson, C.J. et al., 2021. The Global Virome in One Network (VIRION): an atlas of vertebrate-virus associations. Available at: http://dx.doi.org/10.1101/2021.08.06.455442&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/virion/archive/42fbc2296503d98b5542e4887bcef10418237f56.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:07:17.919Z&nbsp;&nbsp; &nbsp;c75b101e1218b281c49f5e3103fdbc235fd7c28322ef4c41e6060adca585409f&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/virus-host-db&nbsp;&nbsp; &nbsp;Mihara, T., Nishimura, Y., Shimizu, Y., Nishiyama, H., Yoshikawa, G., Uehara, H., Hingamp, P., Goto, S., and Ogata, H.; Linking virus genomes with host taxonomy. Viruses 8, 66 doi:10.3390/v8030066 (2016).&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/virus-host-db/archive/4928da32147a3a3668d41569a05a756b4a8619cf.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:07:57.243Z&nbsp;&nbsp; &nbsp;406710c1bdd8b502e3608eb0dd481a5703dc1427e083c9f44d505e180859e85d&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/wardeh2021&nbsp;&nbsp; &nbsp;Wardeh, M., Baylis, M. &amp; Blagrove, M.S.C. Predicting mammalian hosts in which novel coronaviruses can be generated. Nat Commun 12, 780 (2021). https://doi.org/10.1038/s41467-021-21034-5&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/wardeh2021/archive/d061204c6b8b276d0f019c88fd9f2980ff8e66e1.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:08:09.011Z&nbsp;&nbsp; &nbsp;94330f77c54185e62b5b19de613facf27bd1f16a37c7882a6ccf767c4e9140e9&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/web-of-life&nbsp;&nbsp; &nbsp;Web of Life. http://www.web-of-life.es .&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/web-of-life/archive/f63e4dbd52d31b698df5d5f63a409889a26fd0a5.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:08:14.960Z&nbsp;&nbsp; &nbsp;794e639174dfa96223fea4aeba6ad7f93d873b66275d5712c5db689f25541856&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/wis-ih-wirc&nbsp;&nbsp; &nbsp;WIRC / University of Wisconsin Madison WIS-IH / Wisconsin Insect Research Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/wis-ih-wirc/archive/34162b86c0ade4b493471543231ae017cc84816e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:14:29.368Z&nbsp;&nbsp; &nbsp;0ef2ca9f91b4116a36c162024b3982e3d892e46da62204def83fd4eef888dba0&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/wood2015&nbsp;&nbsp; &nbsp;Wood SA, Russell R, Hanson D, Williams RJ, Dunne JA (2015) Data from: Effects of spatial scale of sampling on food web structure. Dryad Digital Repository. https://doi.org/10.5061/dryad.g1qr6&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/wood2015/archive/66115fc86215246ae9c095549305167f67a0380e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:14:39.789Z&nbsp;&nbsp; &nbsp;bd33fc88cef65a090cce5fac9ac10244c8bbe281d062237fa46ee4768ed008f5&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/yale-peabody&nbsp;&nbsp; &nbsp;Yale University Peabody Museum Collections Data Portal&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/yale-peabody/archive/34ea074eca79c2ac0ca2fd0da855f8180c749fc3.zip&nbsp;&nbsp; &nbsp;2020-12-19T04:13:35.934Z&nbsp;&nbsp; &nbsp;bef1cbbb5d7a7532e99b1fad92ee2e863dd51790b411cbb7ebfb1cc20f049641&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/ysu-bc&nbsp;&nbsp; &nbsp;Yugra State University Biological Collection (YSU BC) IPT&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ysu-bc/archive/2c552f751f227a0aa96cee9b7bd9619f49f235ca.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:17:36.029Z&nbsp;&nbsp; &nbsp;5adb1d2a4ab8439b7d982e2ea94824a92082a79441b96fdc24d3dbf1e0a4d620&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/zander2011&nbsp;&nbsp; &nbsp;Zander, C. D., Josten, N., Detloff, K. C., Poulin, R., McLaughlin, J. P., &amp; Thieltges, D. W. (2011). Food web including metazoan parasites for a brackish shallow water ecosystem in Germany and Denmark. Ecology, 92(10):2007. https://doi.org/10.1890/11-0374.1&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/zander2011/archive/4945ff98bf9f99253c69471a5d8d873e984e1aaf.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:17:40.806Z&nbsp;&nbsp; &nbsp;a350aef3d5081c231a37b7f21a6df095ef8df02fb7eff9c3b43d2a7c84924a0e&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/zenodo-metadata&nbsp;&nbsp; &nbsp;Zenodo. 2020. Zenodo publication with biotic interaction annotations.&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/zenodo-metadata/archive/e266fdd97f6202c855a5526dc49f01d0c7ca9f18.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:17:45.824Z&nbsp;&nbsp; &nbsp;fb76c35741b0ad975c32994d826d4dbce4b2731095e8f2a30eb243d410bf96a2&nbsp;&nbsp; &nbsp;0.12.2<br> globalbioticinteractions/zover&nbsp;&nbsp; &nbsp;Siyu Zhou, Bo Liu, Yelin Han, Yuyang Wang, Lihong Chen, Zhiqiang Wu, Jian Yang, ZOVER: the database of zoonotic and vector-borne viruses, Nucleic Acids Research, 2021;, gkab862, https://doi.org/10.1093/nar/gkab862&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/zover/archive/a88168fa38be6d259c8ee34410e6e4a51d8ed6f3.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:17:55.038Z&nbsp;&nbsp; &nbsp;30619ab3d162cd31fbd56cf220f4fc05104c356ce55d37ec4ed7c9752bc80207&nbsp;&nbsp; &nbsp;0.12.2<br> holmesjtg/okaloosa-county-coastal-uplands&nbsp;&nbsp; &nbsp;Jeff Holmes. 2015. Manually transcribed by EOL Education.&nbsp;&nbsp; &nbsp;https://github.com/holmesjtg/okaloosa-county-coastal-uplands/archive/04071fa674aff8e0b61fafc639566a964849cad7.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:26.058Z&nbsp;&nbsp; &nbsp;3fd735fbadfe89b340119cc4bcb351a3d5494414642454a8fedce325238faa07&nbsp;&nbsp; &nbsp;0.12.2<br> ischnura/vespa-velutina-interactions&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/ischnura/vespa-velutina-interactions/archive/d419430d4f84c8b2151cca08bced7177a8cbf533.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:38.778Z&nbsp;&nbsp; &nbsp;011f277408ac97a7de23b0d5e7b80892742930a842c9752b73222f9ac3ad752e&nbsp;&nbsp; &nbsp;0.12.2<br> jeremy-cohen/tmh-across-systems&nbsp;&nbsp; &nbsp;Cohen JM, Sauer EL, Santiago O, Spencer S, Rohr JR. 2020. Divergent impacts of warming weather on wildlife disease risk across climates. Science. doi:10.1126/science.abb1702&nbsp;&nbsp; &nbsp;https://github.com/jeremy-cohen/tmh-across-systems/archive/8d82410f6d40442f92cc082c15dfc97a323dd5d1.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:43.713Z&nbsp;&nbsp; &nbsp;8ab6510fca378a9e63587fb7c36f373d20ffe4afbaa4129344fef70477b89314&nbsp;&nbsp; &nbsp;0.12.2<br> jhammock/Checklist-of-Micro-Organisms-Associated-With-Tree-Seeds-in-the-World&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/23/2017. Species associations manually extracted from Anderson, R. L. (1986). Checklist of micro-organisms associated with tree seeds in the world, 1985. Gen. Tech. Rep. SE-39. Asheville, NC: US Department of Agriculture, Forest Service, Southeastern Forest Experiment Station. 34 p., 39.&nbsp;&nbsp; &nbsp;https://github.com/jhammock/Checklist-of-Micro-Organisms-Associated-With-Tree-Seeds-in-the-World/archive/68785dce5db7f9fa4de10079f5798aa26c40d3e5.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:50.284Z&nbsp;&nbsp; &nbsp;97878c77069ec60343890c801e4e6168de2db0e6fe8bd2a5e000d60dce0b7975&nbsp;&nbsp; &nbsp;0.12.2<br> jhammock/Layman-and-Allgeier-Lionfish&nbsp;&nbsp; &nbsp;Layman, CA, Allgeier, JE. 2012. Characterizing trophic ecology of generalist consumers: a case study of the invasive lionfish in The Bahamas. Mar Ecol Prog Ser, Vol. 448: 131&ndash;141. doi: 10.3354/meps09511&nbsp;&nbsp; &nbsp;https://zenodo.org/record/232498/files/jhammock/Layman-and-Allgeier-Lionfish-1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:21:57.867Z&nbsp;&nbsp; &nbsp;80649bf28bd8504b57d97e3057eb0e3f4227743f477608c171d94f136feea0fc&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/EDWIP&nbsp;&nbsp; &nbsp;Failed inoculations indexed from negative.csv of Onstad, D.W. EDWIP: Ecological Database of the World&#39;s Insect Pathogens. Data provided by Onstad and transcribed by Tad Dallas .&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/EDWIP/archive/34f66868ad413f1884c581061291e14eaf0147d9.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:05.979Z&nbsp;&nbsp; &nbsp;250495aee1eee5f59e79a886cbfff375c58b0a4e865f59489d9d829e98244878&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/FRUBASE&nbsp;&nbsp; &nbsp;Jordano, Pedro (2013), Data from: Angiosperm fleshy fruits and seed dispersers: a comparative analysis of adaptation and constraints in plant-animal interactions, Dryad, Dataset, https://doi.org/10.5061/dryad.9tb73&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/FRUBASE/archive/ed685ad34c4bc40221fce273c94bfa3e34e84ddc.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:10.994Z&nbsp;&nbsp; &nbsp;0e5ac8d4bf52fc5b6d6b3302edcc6dae28bf9a6717b50a6c0223909eb86c1973&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/JLewis_GoMexSi&nbsp;&nbsp; &nbsp;http://gomexsi.tamucc.edu&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/JLewis_GoMexSi/archive/f55ee847661a28b136a86f6669e81669f656fc1b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:21.363Z&nbsp;&nbsp; &nbsp;01d7c985a183f74a69a709e342252489417fb667a28c66c461bc71043835a0bc&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/Lice&nbsp;&nbsp; &nbsp;Sarah E Miller. 06/17/2015. Durden, Lance A., and Guy A. Musser. The Sucking Lice (Insecta, Anoplura) of the World : A Taxonomic Checklist with Records of Mammalian Hosts and Geographical Distributions. Bulletin of the AMNH ; No. 218. New York: American Museum of Natural History, 1994. Web.&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/Lice/archive/7adc3eebf7a62bc83390a952217759e9da571864.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:38.639Z&nbsp;&nbsp; &nbsp;3fff0167e2812eb03467391e75a70a3c4e66524164ce97ab06138c6a4652fcd8&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/animal-disease&nbsp;&nbsp; &nbsp;Mungall CJ. 2016. Animal Diseases. GitHub.&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/animal-disease/archive/fe22abb536b2c4a828c485a8e2495dbd00343cfe.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:22:03.573Z&nbsp;&nbsp; &nbsp;04a49b5d4e4fc8acf3e60b99f4da685296ffcefc859f113be525781f7342007b&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/ballantyne2015&nbsp;&nbsp; &nbsp;Ballantyne, Gavin; Baldock, Katherine C. R.; Willmer, Pat G. (2015), Data from: Constructing more informative plant-pollinator networks: visitation and pollen deposition networks in a heathland plant community, Dryad, Dataset, https://doi.org/10.5061/dryad.17pp3&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/ballantyne2015/archive/7238fce4c1a08b1a3e7c27ba1782abe0b262d6c1.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:22:08.909Z&nbsp;&nbsp; &nbsp;cdab3ba66d4198322407fc37c57f3d90755be796af796ab36ac5922b864f1299&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, K., Van Wagner, J., Behm, R., Brown, Z., Tan, E., &amp; Liu, K. (2020). BID: A project to share biotic interaction and ecological trait data about bees (Hymenoptera: Anthophila). UC Santa Barbara: Cheadle Center for Biodiversity and Ecological Restoration. Retrieved from https://escholarship.org/uc/item/1g21k7bf&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/bee-interaction-database/archive/bb75b7faf03d152be71a5805c99c95ec0afa4f1a.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:22:16.126Z&nbsp;&nbsp; &nbsp;92c19d33bbb883754040a7dc49722eae00ffa91b045294f041ac050491ccaf4a&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/caradonna2020&nbsp;&nbsp; &nbsp;CaraDonna, P.J. 2020. Temporal variation in plant-pollinator interactions, Rocky Mountain Biological Laboratory, CO, USA, 2013 - 2015 ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/27dc02fe1655e3896f20326fed5cb95f (Accessed 2021-04-16).&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/caradonna2020/archive/2ae5c1f4ce1e65fef5098a27652320e5d90fa7b9.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:22:20.516Z&nbsp;&nbsp; &nbsp;e40c1ee38dc8f9807f0049278f37e4bb3dd2043b5c53e26ac415481bc258e877&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/data&nbsp;&nbsp; &nbsp;Urban M, Cuzick A, Rutherford K, Irvine A, Pedro H, Pant R, Sadanadan V, Khamari L, Billal S, Mohanty S, Hammond-Kosack KE. PHI-base: a new interface and further additions for the multi-species pathogen-host interactions database. Nucleic Acids Res. 2017 Jan 4;45(D1):D604-D610. doi: 10.1093/nar/gkw1089. Epub 2016 Dec 3. PMID:27915230&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/data/archive/9e947b7711dd40ec76b2c146ccf788d3cde71651.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:22:55.450Z&nbsp;&nbsp; &nbsp;ba74229441776a2cf6c397ad2212200f0324ed39381af2f135aa3a3a44e40ad1&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/dietdatabase&nbsp;&nbsp; &nbsp;Hurlbert, A. H., Olsen, A. M., Sawyer, M. M., and Winner, P. M. 2021. Avian Diet Database. https://doi.org/10.5281/zenodo.5151056&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/dietdatabase/archive/225e33758e437c821b2960f14115f74f4dc46c42.zip&nbsp;&nbsp; &nbsp;2021-10-30T04:00:39.898Z&nbsp;&nbsp; &nbsp;462b90468d65134d6847d0e6d99c62998beb7fd0c1f0a01c40e76414b1060696&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/geosymbio&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2015. Summarizing interactions of Symbiodinium after consulting Michele Weber.&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/geosymbio/archive/a9cb473a202ac656271c04e3ab2b7233cdf5c522.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:15.982Z&nbsp;&nbsp; &nbsp;0d4b6e5d411e61d120ca113764345ae37dea9b53f454401ebccffefeb48ae933&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/magrach2017&nbsp;&nbsp; &nbsp;Magrach, Ainhoa et al. (2017), Data from: Plant-pollinator networks in semi-natural grasslands are resistant to the loss of pollinators during blooming of mass-flowering crops, Dryad, Dataset, https://doi.org/10.5061/dryad.k0q1n&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/magrach2017/archive/0a232001a23f11297d31653f58ef7cbdbc799e08.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:43.234Z&nbsp;&nbsp; &nbsp;7a45f733bb471ce0afc7a71aefef7b4a27499a406f029c9a42d2020d3de083df&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/olito2015&nbsp;&nbsp; &nbsp;Olito, Colin; Fox, Jeremy W. (2015), Data from: Species traits and abundances predict metrics of plant&ndash;pollinator network structure, but not pairwise interactions, Dryad, Dataset, https://doi.org/10.5061/dryad.7st32&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/olito2015/archive/c10303a46b03a6f0978304e1dd6fc3a8089c7bda.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:51.140Z&nbsp;&nbsp; &nbsp;c0df3678359fb9e6dc25204966b63f4199a9df8195cd4bf934dc0733983b01e6&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/pollination_catalogue&nbsp;&nbsp; &nbsp;Giselle Muschett &amp; Francisco E. Font&uacute;rbel. 2021. A comprehensive catalogue of plant &ndash; pollinator interactions for Chile&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/pollination_catalogue/archive/adaaa1d29b58b5766c6c167bb70ff22c8f80265d.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:23:56.941Z&nbsp;&nbsp; &nbsp;1f8de7defc49619c75e9b2934cb36a023fa5dc5c338c0a506ba841a20047653d&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/portalier2018&nbsp;&nbsp; &nbsp;Portalier, Sebastien; Fussmann, Gregor; Loreau, Michel; Cherif, Mehdi (2018), Data from: The mechanics of predator-prey interactions: first principles of physics predict predator-prey size ratios, Dryad, Dataset, https://doi.org/10.5061/dryad.8c40mb0&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/portalier2018/archive/7278ec1310a66cd65f03d56cdbcc248842cd6cba.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:02.057Z&nbsp;&nbsp; &nbsp;ed6d47203e64733754bc62c2dce37d0d188ef03f71924afba2e299293b87e8bf&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/redhead2018&nbsp;&nbsp; &nbsp;Redhead, J.W.; Coombes, C.F.; Dean, H.J.; Dyer, R.; Oliver, T.H.; Pocock, M.J.O.; Rorke, S.L.; Vanbergen, A.J.; Woodcock, B.A.; Pywell, R.F. (2018). Plant-pollinator interactions database for construction of potential networks. NERC Environmental Information Data Centre. https://doi.org/10.5285/6d8d5cb5-bd54-4da7-903a-15bd4bbd531b&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/redhead2018/archive/4e55aeb5dddafaf3650e7d740c97ded4ee0d6751.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:09.023Z&nbsp;&nbsp; &nbsp;9448863fc03c020e10313dac928ae049e4241e52b4c252d7c8d80a7325b40f30&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/udy2020&nbsp;&nbsp; &nbsp;Udy, Kristy; Reininghaus, Hannah; Scherber, Christoph; Tscharntke, Teja (2020), Data from: Plant-pollinator interactions along an urbanization gradient from cities and villages to farmland landscapes, Dryad, Dataset, https://doi.org/10.5061/dryad.4mw6m906s&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/udy2020/archive/b559db9d2455104a3bce3d50d4c6258654da6818.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:14.106Z&nbsp;&nbsp; &nbsp;55cfb7eb1fa1c175ed22cb9e5abd0c3e456b6ef3216e0f284821ef311ba7967a&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/uredinales-belgium-checklist&nbsp;&nbsp; &nbsp;Vanderweyen, A., &amp; Fraiture, A. (2009). Catalogue des Uredinales de Belgique, 1re partie, Chaconiaceae, Coleosporiaceae, Cronartiaceae, Melampsoraceae, Phragmidiaceae, Pucciniastraceae, Raveneliaceae et Uropyxidaceae. Lejeunia, Revue de Botanique|Vanderweyen, A., &amp; Fraiture, A. (2009). Catalogue des Uredinales de Belgique, 2&egrave;me partie, Pucciniaceae (sauf Puccinia)(suite 2). Lejeunia, Revue de Botanique.|Vanderweyen, A., &amp; Fraiture, A. (2012). CATALOGUE DES UREDINALES DE Belgique 3&egrave;me partie Pucciniaceae (genre Puccinia). Lejeunia, Revue de Botanique.&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/uredinales-belgium-checklist/archive/4d452ac12bf20a5d9a8ccd6a87e9fc7984a86bdb.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:19.767Z&nbsp;&nbsp; &nbsp;adc5a5143f4dab2d8f6edd3f2b15bcee283eb8d2c49e12de05af4a73dfe47dd1&nbsp;&nbsp; &nbsp;0.12.2<br> jhpoelen/willoughby-etal-2021-bat-co-roosting&nbsp;&nbsp; &nbsp;Anna Willoughby et al. 2021. Bat co-roosting interactions extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/jhpoelen/willoughby-etal-2021-bat-co-roosting/archive/270ba693de12dc3aa9f0921a81f90f7b47030ed7.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:24.528Z&nbsp;&nbsp; &nbsp;9e1be8bba634cc3f6c1f06326e0882a0053d0404350363e8000f3475cc625466&nbsp;&nbsp; &nbsp;0.12.2<br> karelTole/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/karelTole/template-dataset/archive/949abcbe08011c1d9fa53327ad5dc1d6be728a95.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:31.175Z&nbsp;&nbsp; &nbsp;b06d299e95d45f79f2bb14234c1c769b9ec9428a76b6b7b70e372bbef8c5637f&nbsp;&nbsp; &nbsp;0.12.2<br> liampshaw/Pathogen-host-range&nbsp;&nbsp; &nbsp;Shaw, LP, Wang, AD, Dylus, D, et al. The phylogenetic range of bacterial and viral pathogens of vertebrates. Mol Ecol. 2020; 29: 3361&ndash; 3379. https://doi.org/10.1111/mec.15463&nbsp;&nbsp; &nbsp;https://github.com/liampshaw/Pathogen-host-range/archive/f4014ed79b1211a63e20fedfae7d42a305f7775e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:24:50.897Z&nbsp;&nbsp; &nbsp;9ba203583352f358b2df82e35a13fd1acb2fd7cab2556c3f75233b14db813aea&nbsp;&nbsp; &nbsp;0.12.2<br> mangal-wg/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/mangal-wg/template-dataset/archive/8abd2ba18457288f33527193299504015fae6def.zip&nbsp;&nbsp; &nbsp;2021-10-27T07:48:40.571Z&nbsp;&nbsp; &nbsp;6bfc17b8717e6e8e478552f12404bc8887d691a155ffd9cd9bfc80cb6747c5d2&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/A-Host-parasite-Catalog-of-North-American-Tachinidae-Diptera-&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/28/2015. Arnaud, Paul Henri. A Host-parasite Catalog of North American Tachinidae (Diptera). Washington, D.C.: U.S. Dept. of Agriculture, Science and Education Administration, 1978.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258186/files/millerse/A-Host-parasite-Catalog-of-North-American-Tachinidae-Diptera--v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:14.014Z&nbsp;&nbsp; &nbsp;d1d8dd7203b25060c9a42dc20a2b082b9eac5d357565663df86baf7f0b569cce&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Adams-et-al.-2016&nbsp;&nbsp; &nbsp;Sarah E Miller. 8/25/2016. Text gathered from Adams et al. 2016 A century of Chinook salmon consumption by marine mammal predators in the Northeast Pacific Ocean.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258193/files/millerse/Adams-et-al.-2016-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:05.669Z&nbsp;&nbsp; &nbsp;8c9881182a178f58eb208aeb6689b110b17a6dd088d9629338113147ab043a95&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Aluja-et-al-New-Host-Plant-and-Distribution-Records-in-Mexico&nbsp;&nbsp; &nbsp;Sarah E. Miller. 04/14/2015.&nbsp; Information extracted from litterature Aluja, Mart&iacute;n and Pi&ntilde;ero, Jaime and L&oacute;pez, Maurilio and Ru&iacute;z, C&eacute;sar and Z&uacute;&ntilde;iga, Alberto and Piedra, Enrique and D&iacute;az-Fleischer, Francisco and Sivinski, John. New Host Plant and Distribution Records in Mexico for Anastrepha Spp., Toxotrypana Curvicauda Gerstacker, Rhagoletis Zoqui Bush, Rhagoletis Sp., and Hexachaeta Sp. (Diptera: Tephritidae). Proceedings of the Entomological Society of Washington 102 (2000): 2000. http://www.biodiversitylibrary.org/part/54830.&nbsp;&nbsp; &nbsp;https://github.com/millerse/Aluja-et-al-New-Host-Plant-and-Distribution-Records-in-Mexico/archive/0cf667a092fbf06e549ec4fdfffd7ad874259710.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:18.900Z&nbsp;&nbsp; &nbsp;a660336796b6e789c4bd57f902dd0715fc91393ea15580f9885c59947b482795&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Amphibians-and-Reptiles-Predators-and-Prey.-Amphibians-and-Birds&nbsp;&nbsp; &nbsp;Sarah E Miller. 4/16/2015. Species associations manually extracted from Cook, W. E. Amphibians and Reptiles: Predators and Prey. Amphibians and Birds. Smithsonian Herpetological Information Service: 1-15.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258194/files/millerse/Amphibians-and-Reptiles-Predators-and-Prey.-Amphibians-and-Birds-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:26.519Z&nbsp;&nbsp; &nbsp;1762a1a625936896a22fa42ab094acb60c73c96a6dc197a3f9069f9d1797b3d0&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Anemonefish&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/17/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258196/files/millerse/Anemonefish-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:34.343Z&nbsp;&nbsp; &nbsp;fa9a6d260ec5577e38aa56b2172a301eca075e6714882c0a3bbc6685d1f45da4&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Ant-Plant-Interactions&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/25/2017. Species associations extracted from Fernanda V. Costa. 2016. Ant-Plant Interactions in Brazilian Rupestrian Grasslands - Dataset from 2014. urn:node:KNB. doi:10.5063/F19C6VB4.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/800554/files/millerse/Ant-Plant-Interactions-V1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:42.739Z&nbsp;&nbsp; &nbsp;161e083b66e416c5e87399d92128b4f955820e67880c4bd7346230ddb2636def&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Arctic-food-web&nbsp;&nbsp; &nbsp;Sarah E Miller. 7/7/2016. Text gathered from Wirta, H.K., Vesterinen, E.J., Hamb&auml;ck, P.A., Weingartner, E., Rasmussen, C., Reneerkens, J., Schmidt, N.M., Gilg, O. and Roslin, T., 2015. Exposing the structure of an Arctic food web. Ecology and evolution, 5(17), pp.3842-3856.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258202/files/millerse/Arctic-food-web-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:25:52.695Z&nbsp;&nbsp; &nbsp;d0fa4a6f28751d930c02e10f3b90b16d27636d8945a2ed42f0a619ee429aec13&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Arctos&nbsp;&nbsp; &nbsp;Sarah E Miller. 7/6/2016. Arctos collection.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/823590/files/millerse/Arctos-V1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:14.582Z&nbsp;&nbsp; &nbsp;6b2749c550797ccb0b420ef2693809c4c9641cdb5859a5aba4f109fdbc447b14&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/BHL-Interactions&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/21/2015. Text gathered from http://www.biodiversitylibrary.org/&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258229/files/millerse/BHL-Interactions-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:54.554Z&nbsp;&nbsp; &nbsp;850cb1d0c187f994a7fedbdc56aa32e493fc0bba19c4952c1f9c67d31ef32bd8&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Bald-Eagle-Diet&nbsp;&nbsp; &nbsp;Sarah E Miller. 7/27/2015. Newsome SD, Collins PW, Sharpe P. Foraging ecology of a reintroduced population of breeding Bald Eagles on the Channel Islands, California, USA, inferred from prey remains and stable isotope analysis. The Condor [Internet]. Cooper Ornithological Society; 2015 Jul 22;117(3):396&ndash;413.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258233/files/millerse/Bald-Eagle-Diet-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:22.463Z&nbsp;&nbsp; &nbsp;b58efdeaf35f6a4f5ce5e9dddfbfe0c751f1902d0dc079057f2482414b0c3377&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Bascompte-J.-Meli-n-C.J.-and-Sala-E.-2005&nbsp;&nbsp; &nbsp;Sarah E Miller. 3/31/2015.&nbsp; Species associations extracted from paper Jordi Bascompte, Carlos J. Meli&aacute;n, and Enric Sala Interaction strength combinations and the overfishing of a marine food web PNAS 2005 102: 5443-5447.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258231/files/millerse/Bascompte-J.-Meli-n-C.J.-and-Sala-E.-2005-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:30.889Z&nbsp;&nbsp; &nbsp;708198e475eeea8cc1ff4f9ba794147e1b7780e79c841e08ee62680496f9e25f&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Bat-flies&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/6/2015. Species associations manually extracted from Obame-Nkoghe, J., Rahola, N., Bourgarel, M., Yangari, P., Prugnolle, F., Maganga, G.D., Leroy, E.M., Fontenille, D., Ayala, D. and Paupy, C., 2016. Bat flies (Diptera: Nycteribiidae and Streblidae) infesting cave-dwelling bats in Gabon: diversity, dynamics and potential role in Polychromophilus melanipherus transmission. Parasites &amp; Vectors, 9(1), p.1.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258230/files/millerse/Bat-flies-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:38.731Z&nbsp;&nbsp; &nbsp;c6e16c301d0ceb5bd1b8174ff537b97957064db66543ea2111822743a0f7c24d&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Benesh-et-al-2017&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/19/2017. Species associations manually extracted from Benesh, D. P., Lafferty, K. D. and Kuris, A. (2017), A life cycle database for parasitic acanthocephalans, cestodes, and nematodes. Ecology, 98: 882. doi:10.1002/ecy.1680&nbsp;&nbsp; &nbsp;https://github.com/millerse/Benesh-et-al-2017/archive/9dcd91ac0c04b7b06761d30032d2b93369855fcd.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:26:44.691Z&nbsp;&nbsp; &nbsp;c07b41d81a0de63e2d6fb03a2ab7e558129fb3f32860050431e7526496624ac0&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Biological-Station-Arthropod-Collection&nbsp;&nbsp; &nbsp;Sarah E. Miller.&nbsp; 07/06/2017.&nbsp; Information extracted from dataset https://www.idigbio.org/portal/recordsets/db4bb0df-8539-4617-ab5f-eb118aa3126b.&nbsp;&nbsp; &nbsp;https://github.com/millerse/Biological-Station-Arthropod-Collection/archive/bb37104860ca553e97430ac3b6f5fce0a7578663.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:00.901Z&nbsp;&nbsp; &nbsp;0cce96c8183eb0ffbf25f3c8c73a383f469c93113af0548c45c94b8e697196c4&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Bird-Parasite&nbsp;&nbsp; &nbsp;Sarah E Miller. 3/18/2015. Species associations manually extracted from site http://www.burkemuseum.org/ornithology/phenology &nbsp;&nbsp; &nbsp;https://zenodo.org/record/258228/files/millerse/Bird-Parasite-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:08.892Z&nbsp;&nbsp; &nbsp;0c99d2de65498c1df567c478e387785eed814157e41e5eba0c8e8b39bbdba036&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Birds-Consumed-by-the-Invasive-Burmese-Python-Python-molurus-bivittatus-&nbsp;&nbsp; &nbsp;Sarah E. Miller. 04/14/2015.&nbsp; Information extracted from literature Dove, Carla J., Ray W. Snow, Michael R. Rochford, and Frank J. Mazzotti. Birds Consumed By The Invasive Burmese Python (Python Molurus Bivittatus) In Everglades National Park, Florida, USA. The Wilson Journal of Ornithology: 126-31.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258227/files/millerse/Birds-Consumed-by-the-Invasive-Burmese-Python-Python-molurus-bivittatus--v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:16.668Z&nbsp;&nbsp; &nbsp;4b7b18d68efa355489d6e6731335ce3f156a92d89e55daf08d54027b1307a53c&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Buprestidae-of-North-America&nbsp;&nbsp; &nbsp;Sarah E Miller. 06/10/2015. Species associations manually extracted from Chamberlin, W. J. The Buprestidae of North America, Exclusive of Mexico, a Catalogue including Synonomy, Bibliography, Distribution, Type Locality and Hosts of Each Species,. 1926.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/259795/files/millerse/Buprestidae-of-North-America-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:27.154Z&nbsp;&nbsp; &nbsp;8c833bb29fb9acad0218eb861be3d4be3313f54322edbedc5be2c5785b9c27d7&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Canadian-freshwater-fish-and-their-metazoan-parasites&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/18/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258226/files/millerse/Canadian-freshwater-fish-and-their-metazoan-parasites-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:35.009Z&nbsp;&nbsp; &nbsp;c0c53d9f8951003e8deb5ef177dd00b6d1a082518b6bbaca3a6cd4ef995ccdb7&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Carpinteria-Salt-Marsh-Web&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/19/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258225/files/millerse/Carpinteria-Salt-Marsh-Web-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:43.161Z&nbsp;&nbsp; &nbsp;d253aceff3bfbe4bea26e8e12d2b21477b7f91f37a20be285ea1c5a988881beb&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Checklist-of-Micro-Organisms-Associated-With-Tree-Seeds-in-the-World&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/23/2017. Species associations manually extracted from Anderson, R. L. (1986). Checklist of micro-organisms associated with tree seeds in the world, 1985. Gen. Tech. Rep. SE-39. Asheville, NC: US Department of Agriculture, Forest Service, Southeastern Forest Experiment Station. 34 p., 39.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/582647/files/millerse/Checklist-of-Micro-Organisms-Associated-With-Tree-Seeds-in-the-World-V1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:27:52.149Z&nbsp;&nbsp; &nbsp;6c92631f219b84bb7a3addb2041c45b7d2d036544e3b4994f5aa17dbe0442ca6&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Clements-R.-E.-and-F.-L.-Long&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/22/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258223/files/millerse/Clements-R.-E.-and-F.-L.-Long-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:28:00.391Z&nbsp;&nbsp; &nbsp;1b581de73c337f890f08cd9baa8a44f395242f954ca774d8dbb8b0e2724175e5&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Coccidae-of-Egypt&nbsp;&nbsp; &nbsp;Sarah E Miller. 8/25/2016. Text gathered from Hall, W.J., 1923. Further observations on the Coccidae of Egypt. Ministry of Agriculture, Technical and Scientific Service, Bulletin, (36), pp.1-61.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/259823/files/millerse/Coccidae-of-Egypt-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:28:08.358Z&nbsp;&nbsp; &nbsp;80dec1687e8f470ef874747df1d2b6913b1d3916993351094bfa973b779418c0&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Dapstrom-integrated-database-and-portal-for-fish-stomach-records&nbsp;&nbsp; &nbsp;Pinnegar, J.K. (2014). DAPSTOM - An Integrated Database &amp; Portal for Fish Stomach Records. Version 4.7. Centre for Environment, Fisheries &amp; Aquaculture Science, Lowestoft, UK. February 2014, 39pp.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258222/files/millerse/Dapstrom-integrated-database-and-portal-for-fish-stomach-records-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:36:12.857Z&nbsp;&nbsp; &nbsp;82e40c4b29c05a3c5836b7b8ea6795425cf06ad34060ecd8341bf18ae6113499&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Diseases-of-Coffee-in-Porto-Rico&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/17/2016. Text gathered from Fawcett, George L. Fungus Diseases of Coffee in Porto Rico. 1915. doi:10.5962/bhl.title.37321&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258221/files/millerse/Diseases-of-Coffee-in-Porto-Rico-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:36:22.003Z&nbsp;&nbsp; &nbsp;dd23d3c49ea2c29241309860bb506e5f62372074cf2bf6dc321505856c2e93aa&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Ecological-Database-of-the-World-s-Insect-Pathogens&nbsp;&nbsp; &nbsp;Sarah E Miller. 12/13/2016. Species associations manually extracted from Onstad, D.W. EDWIP: Ecological Database of the World&#39;s Insect Pathogens. Champaign, Illinois: Illinois Natural History Survey, [23/11/2016]. http://insectweb.inhs.uiuc.edu/Pathogens/EDWIP.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258220/files/millerse/Ecological-Database-of-the-World-s-Insect-Pathogens-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:36:46.276Z&nbsp;&nbsp; &nbsp;26ff7994d1161456ffb4938f7801c697c6231da5201c4435a2811534bb83ef21&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Feeding-Niches-of-Hummingbirds-in-a-Trinidad-Valley&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/24/2015. Text gathered from Snow, Barbara K., and D. W. Snow. Feeding niches of hummingbirds in a Trinidad valley. The Journal of Animal Ecology (1972): 471-485.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258219/files/millerse/Feeding-Niches-of-Hummingbirds-in-a-Trinidad-Valley-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:36:54.171Z&nbsp;&nbsp; &nbsp;973deeea611bbbb6490fdc696589eb5bec037bf2568b40bab7819f1b5618e8be&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Fishes-of-Basrah-Province-Iraq&nbsp;&nbsp; &nbsp;Sarah E Miller. 12/20/2016. Species associations manually extracted from Mhaisen, F.T., Ali, A.H. and Khamees, N.R., Checklists of Protozoans and Myxozoans of Freshwater and Marine Fishes of Basrah Province, Iraq.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258218/files/millerse/Fishes-of-Basrah-Province-Iraq-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:02.511Z&nbsp;&nbsp; &nbsp;07046537d13c930068d8d8410af206922b9ec106bc2012c8c04aa230173b12ff&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Flea-Collection&nbsp;&nbsp; &nbsp;Sarah E Miller. 7/7/2016. Text gathered from various flea texts.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258217/files/millerse/Flea-Collection-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:10.344Z&nbsp;&nbsp; &nbsp;cec0ce5b171008d73d9637294473b08618d30688f0febf90d102680cb093b610&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Flowers-and-insects-lists-of-visitors-to-four-hundred-and-fifty-three-flowers&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/25/2015. Species associations manually extracted from Robertson, C. 1929. Flowers and insects: lists of visitors to four hundred and fifty-three flowers. Carlinville, IL, USA, C. Robertson.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258216/files/millerse/Flowers-and-insects-lists-of-visitors-to-four-hundred-and-fifty-three-flowers-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:19.516Z&nbsp;&nbsp; &nbsp;ce01d9a2c4dc26fe2d46519011915766d3a03cb857188be592b73adb1aa6bf94&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Fly-parasites&nbsp;&nbsp; &nbsp;Sarah E. Miller.&nbsp; 04/14/2015.&nbsp; Information extracted from litterature Wharton, Robert A, and Paul M Marsh. New World Opiinae (Hymenoptera: Braconidae) Parasitic on Tephritidae (Diptera). Journal of the Washington Academy of Sciences 68 (1978): 21. http://www.biodiversitylibrary.org/part/50699.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258215/files/millerse/Fly-parasites-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:26.954Z&nbsp;&nbsp; &nbsp;e34267ca389cf37c1b363228c370121f7d23d6ff64889aadbd41bf4a725123b0&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Fossil-snake&nbsp;&nbsp; &nbsp;Sarah E Miller. 12/21/2016. Species associations extracted from Smith, K., Scanferla, A. 2016. Fossil snake preserving three trophic levels and evidence for an ontogenetic dietary shifts. Palaeobiodiversity and Palaeoenvironments. doi: 10.1007/s12549-016-0244-1&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258214/files/millerse/Fossil-snake-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:34.872Z&nbsp;&nbsp; &nbsp;6939c72af97d1942468f2aac1e5f9206f313eaa12463fd8c0f11922fc2df0b33&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Greystock-et-al.-2015&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/19/2016. Species associations extracted from Graystock, P., Blane, E.J., McFrederick, Q.S., Goulson, D. and Hughes, W.O., 2016. Do managed bees drive parasite spread and emergence in wild bees?. International Journal for Parasitology: Parasites and Wildlife, 5(1), pp.64-75.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258213/files/millerse/Greystock-et-al.-2015-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:52.183Z&nbsp;&nbsp; &nbsp;68ad013ec2b9db818b9b6a4ab0693b90756f2c09e746f86bf34bc9a55c8e559e&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Host-plant-and-distribution-records&nbsp;&nbsp; &nbsp;Sarah E. Miller. 04/14/2015.&nbsp; Information extracted from litterature Aluja, Mart&iacute;n and Pi&ntilde;ero, Jaime and L&oacute;pez, Maurilio and Ru&iacute;z, C&eacute;sar and Z&uacute;&ntilde;iga, Alberto and Piedra, Enrique and D&iacute;az-Fleischer, Francisco and Sivinski, John. New Host Plant and Distribution Records in Mexico for Anastrepha Spp., Toxotrypana Curvicauda Gerstacker, Rhagoletis Zoqui Bush, Rhagoletis Sp., and Hexachaeta Sp. (Diptera: Tephritidae). Proceedings of the Entomological Society of Washington 102 (2000): 2000. http://www.biodiversitylibrary.org/part/54830.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/259822/files/millerse/Host-plant-and-distribution-records-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:00.275Z&nbsp;&nbsp; &nbsp;2a9e01103a173d7518eb3e73681bd0503fc845cb43315d094a03301cd741f180&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Hummingbird-and-Flower-Interactions&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/26/2015. https://www.desertmuseum.org/pollination/hummingbirds.php&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258212/files/millerse/Hummingbird-and-Flower-Interactions-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:08.303Z&nbsp;&nbsp; &nbsp;3b181d03b8adf6e92b38213987050a609957297467cf6496e0bf4b02256077d4&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Insect-Herbivores-on-Goldenrods-Solidago-altissima&nbsp;&nbsp; &nbsp;Sarah E Miller. 3/25/2015. Species associations manually extracted from literature Root R. Insect Herbivores on Goldenrods (Solidago altissima) in the Finger Lakes Region, New York, USA (Dick_Root.7.13)&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258211/files/millerse/Insect-Herbivores-on-Goldenrods-Solidago-altissima-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:17.432Z&nbsp;&nbsp; &nbsp;b6ecd6b03fe9cfb9518737e54510f0edec7a400d2bf3e72a4fabf05f0e025345&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Interaction-data-by-SEM&nbsp;&nbsp; &nbsp;Sarah E Miller. 2/4/2015. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258210/files/millerse/Interaction-data-by-SEM-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:25.360Z&nbsp;&nbsp; &nbsp;4a7715afe5cd60f6af16c69031b4fabae49e9b52c4c200ce3b0ed200494b3e41&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Jstor-Collecton&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/3/2015. Species associations manually extracted from JSTOR.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258209/files/millerse/Jstor-Collecton-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:33.584Z&nbsp;&nbsp; &nbsp;997d4ea17196e13240a4bb2e86b6005386380a72d3778ee5188a7559839a4d75&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Lara-C.-2006&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/24/2016. Text gathered from Lara, C. (2006). Temporal dynamics of flower use by hummingbirds in a highland temperate forest in Mexico. Ecoscience, 13(1), 23-29.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258208/files/millerse/Lara-C.-2006-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:41.521Z&nbsp;&nbsp; &nbsp;655ccc6f82d2e7a49b00aae019480a5afd68c807f2924351c75c5f8c8e211393&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Lice&nbsp;&nbsp; &nbsp;Sarah E Miller. 06/17/2015. Durden, Lance A., and Guy A. Musser. The Sucking Lice (Insecta, Anoplura) of the World : A Taxonomic Checklist with Records of Mammalian Hosts and Geographical Distributions. Bulletin of the AMNH ; No. 218. New York: American Museum of Natural History, 1994. Web.&nbsp;&nbsp; &nbsp;https://github.com/millerse/Lice/archive/82aaea4eac0281c202bf20b12c5c4d0947e7936a.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:50.407Z&nbsp;&nbsp; &nbsp;7272a4f2a156de904aaacc9fbe089bf1342f3f9b6df15ab77bf9064f93ac5233&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Lichenous&nbsp;&nbsp; &nbsp;Sarah E Miller. 3/22/2016. Species associations extracted from Lawrey, J. D. &amp; P. Diederich. 2016. Lichenicolous fungi &ndash; worldwide checklist, including isolated cultures and sequences available. URL: http://www.lichenicolous.net [1/3/2017].&nbsp;&nbsp; &nbsp;https://zenodo.org/record/545807/files/millerse/Lichenous-v2.0.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:38:59.103Z&nbsp;&nbsp; &nbsp;7d0f357bc78ad35fb0b6838053f83708ae7445dfea6cabd33e9db8e0f0d1ef77&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/PLANT-SEED-DISPERSER-WEBS&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/20/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258200/files/millerse/PLANT-SEED-DISPERSER-WEBS-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:58.054Z&nbsp;&nbsp; &nbsp;4c17c8f3999addf1aa48f2ea51c02e344625509235b040be0364272d2b2878f0&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Plant-Disease-Survey&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/17/2016. Distribution, Symptoms and Control of Some of the More Important Plant Diseases. Beltsville, Md.: Plant Disease Survey, Division of Mycology and Disease Survey, Bureau of Plant Industry, Soils, and Agricultural Engineering, Agricultural Research Administration, United States Department of Agriculture, 1953.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258204/files/millerse/Plant-Disease-Survey-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:32.883Z&nbsp;&nbsp; &nbsp;8bf948699a7425a8e21634ceea71aa41d9baa36c5333ae57db40d2f2bd52fbfc&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Plant-Herbivore-Web&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/18/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258203/files/millerse/Plant-Herbivore-Web-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:41.300Z&nbsp;&nbsp; &nbsp;a69ec00c0c005e9a4665abdc0626db53d49d991bd352dc1ee56ecc32d0367b2d&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Plant-Pollinator-Web&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/19/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258201/files/millerse/Plant-Pollinator-Web-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:50.228Z&nbsp;&nbsp; &nbsp;9d273944f48cb97d4248182eba0e208c24d4bf6aca4d2d12ba3cba79d97c4871&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Plant-ant-webs&nbsp;&nbsp; &nbsp;Sarah E Miller. 6/18/2015. Species associations manually extracted from datasets https://www.nceas.ucsb.edu/interactionweb/resources.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258205/files/millerse/Plant-ant-webs-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:19.948Z&nbsp;&nbsp; &nbsp;29e3bc178ddaa78fb116e9d17e0268fec750af34ad04d30887de40d13b82e904&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Pollination-Collection&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/30/2016. Interations from various papers.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258199/files/millerse/Pollination-Collection-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:08.103Z&nbsp;&nbsp; &nbsp;6143bb865cfcd25934277df00b53e636fb8bc9456d0a42df70c44a413047e630&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Seaweed&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/2/2015. Byrnes, Jarrett Edward; Reed, Daniel C; Cardinale, Bradley Joseph; Cavanaugh, Kyle C; Holbrook, Sally J; Schmitt, Russell J (2012-02-27): SBC LTER: Reef: Feeding relationships for kelp forest species. Santa Barbara Coastal LTER; Long Term Ecological Research Network. http://dx.doi.org/10.6073/pasta/0873e69e238051cb67f28f6025f53da3&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258198/files/millerse/Seaweed-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:16.265Z&nbsp;&nbsp; &nbsp;22da879dc70985701ca679d55352c576e68e57e74fe10d1f41cb0beaf67f4935&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Serengeti&nbsp;&nbsp; &nbsp;Sarah E Miller. 7/27/2015. Baskerville, E.B. et al. (2011) Spatial guilds in the Serengeti food web revealed by a Bayesian group model. PLoS Comp. Biol. 7, e1002321&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258197/files/millerse/Serengeti-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:24.147Z&nbsp;&nbsp; &nbsp;8b397d0324c13e3168ce9ff3628f0a2e88522735f51328def204df5c10ec34f9&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Seton-1929&nbsp;&nbsp; &nbsp;Sarah E Miller. 11/5/2015. Interaction gathered from Seton, E.T. (1929) Lives of Game Animals. Doubleday, Doran &amp; Co., Garden City N.Y., 506 pp.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258192/files/millerse/Seton-1929-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:31.922Z&nbsp;&nbsp; &nbsp;45c861c64e46ff4bb8e3829b3ab16ae1050e264eca44213de425dac3c4d9da2b&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Smithsonian-Repository-Interactions&nbsp;&nbsp; &nbsp;Sarah E Miller. 4/20/2015. Species associations manually extracted from various papers and articles from site https://repository.si.edu&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258191/files/millerse/Smithsonian-Repository-Interactions-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:40.091Z&nbsp;&nbsp; &nbsp;ee8e863452b1bd605b043f7a4e787054ea33f68bcd425b9a5aaa606b0fc64f53&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/The-Butterflies-of-North-America&nbsp;&nbsp; &nbsp;Sarah E. Miller. 04/14/2015.&nbsp; Extracted from literature Scott, J.A. 1986. &nbsp;The Butterflies of North America. &nbsp;Stanford University Press, Stanford, CA&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258190/files/millerse/The-Butterflies-of-North-America-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:40:48.955Z&nbsp;&nbsp; &nbsp;93ac8921a76397e8e30df1f863b5177db82aaba335f663488f59d9d3b0455362&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/US-National-Parasite-Collection&nbsp;&nbsp; &nbsp;http://invertebrates.si.edu/parasites.htm&nbsp;&nbsp; &nbsp;https://github.com/millerse/US-National-Parasite-Collection/archive/882caeb29eec9409ff980ac75ddbbd31aea9ce0b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:41:16.570Z&nbsp;&nbsp; &nbsp;9b453fb523f7922889845230de74ae34ef06295a6307ef743b0688fa4f6d8f2d&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Wardeh-et-al.-2015&nbsp;&nbsp; &nbsp;Sarah E Miller. 4/18/2016. Species associations from Wardeh, M. et al. Database of host-pathogen and related species interactions, and their global distribution. Sci. Data 2:150049 doi: 10.1038/sdata.2015.49 (2015)&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258189/files/millerse/Wardeh-et-al.-2015-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:41:38.184Z&nbsp;&nbsp; &nbsp;29427d1a3d0beb010da30f5f5f9db72efb203fc9947848b5d6b404026b2df011&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Weidinger-et-al.-2009&nbsp;&nbsp; &nbsp;Sarah E Miller. 3/4/2015. Species associations manually extracted from http://onlinelibrary.wiley.com/doi/10.1111/j.1474-919X.2009.00907.x/suppinfo.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258188/files/millerse/Weidinger-et-al.-2009-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:41:46.068Z&nbsp;&nbsp; &nbsp;f5a63d4c2f2f0407c5b932c5a6bc7238f8b784294c37ced0a6003ad064828332&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Wenzel-Tipton-Classified-List-of-Hosts-and-Parasites&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/17/2016. Wenzel, Rupert L., and Vernon J. Tipton. Appendix: Classified List of Hosts and Parasites. Chicago, Ill.: Field Museum of Natural History, 1966.&nbsp;&nbsp; &nbsp;https://github.com/millerse/Wenzel-Tipton-Classified-List-of-Hosts-and-Parasites/archive/8eeb5de6e45c97dd4f6e962dcdf5ad65a021c20b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:41:51.414Z&nbsp;&nbsp; &nbsp;b57c5d5aee86c4786557f79ab4e23468f242f366de06d8d581a78ad88990564b&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Wharton-and-Marsh-1978.-New-World-Opiinae&nbsp;&nbsp; &nbsp;Sarah E. Miller.&nbsp; 04/14/2015.&nbsp; Information extracted from litterature Wharton, Robert A, and Paul M Marsh. New World Opiinae (Hymenoptera: Braconidae) Parasitic on Tephritidae (Diptera). Journal of the Washington Academy of Sciences 68 (1978): 21. http://www.biodiversitylibrary.org/part/50699.&nbsp;&nbsp; &nbsp;https://github.com/millerse/Wharton-and-Marsh-1978.-New-World-Opiinae/archive/5e6ca4a365cc982805ccad588dc129d4bb230f4e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:41:56.772Z&nbsp;&nbsp; &nbsp;28421efb2c2c662b36bcc5986c3b4eeea04ff47fafe5a83675bd66f170237aff&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/Zika-Virus&nbsp;&nbsp; &nbsp;Sarah E Miller. 2/14/2016. Species associations manually extracted from Lanciotti RS, Kosoy OL, Laven JJ, Velez JO, Lambert AJ, Johnson AJ, et al. Genetic and serologic properties of Zika virus associated with an epidemic, Yap State, Micronesia, 2007. Emerg Infect Dis [serial on the Internet]. 2008 Aug [2/14/2016]. Available from http://wwwnc.cdc.gov/eid/article/14/8/08-0287 and Hayes EB. Zika virus outside Africa. Emerg Infect Dis [serial on the Internet]. 2009 Sep [2/14/2016]. Available from http://wwwnc.cdc.gov/eid/article/15/9/09-0442&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258187/files/millerse/Zika-Virus-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:05.213Z&nbsp;&nbsp; &nbsp;6dffe9939ddded3e4e5e7af16782a61e5aeb4eb10e78ab74e3c8b76a112399ef&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/grazers-of-North-American-aquatic-plants&nbsp;&nbsp; &nbsp;Sarah E Miller. 5/16/2016. Harms, N. E., &amp; Grodowitz, M. J. (2009). Insect herbivores of aquatic and wetland plants in the United States: a checklist from literature. Journal of Aquatic Plant Management (JAPM), 47, 73.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/582289/files/millerse/grazers-of-North-American-aquatic-plants-V1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:37:44.129Z&nbsp;&nbsp; &nbsp;f4390478ab509f8cb4dc35c5db3d14921f3726c30ae552e969907eeaad9478c9&nbsp;&nbsp; &nbsp;0.12.2<br> millerse/parasitic-plant-connection&nbsp;&nbsp; &nbsp;Sarah E Miller. 9/15/2016. Species associations extracted from http://parasiticplants.siu.edu/index.html.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/258206/files/millerse/parasitic-plant-connection-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:39:11.667Z&nbsp;&nbsp; &nbsp;21c4ab208b3293e384b511e57fa88c0524234d72849665ecdcb0f73fc65c636a&nbsp;&nbsp; &nbsp;0.12.2<br> ninacourlee/Andromeda-polifolia-fungal-consortia&nbsp;&nbsp; &nbsp;Filippova N. 2021. The fungal consortium of Andromeda polifolia in bog habitats&nbsp;&nbsp; &nbsp;https://zenodo.org/record/5632779/files/ninacourlee/Andromeda-polifolia-fungal-consortia-v1.0.1.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:18.344Z&nbsp;&nbsp; &nbsp;ff4c997a74f0210310ef8107d6c4905fe56308cb1c86d28715bd0789c55400c2&nbsp;&nbsp; &nbsp;0.12.2<br> osmiddleton/CarniDIET-Database&nbsp;&nbsp; &nbsp;Middleton, O.S, Svensson, H, Scharlemann, J.P.W, Faurby, S, Sandom, C.J. CarniDIET 1.0: A database of terrestrial carnivorous mammal diets. Global Ecology and Biogeography. https://doi.org/10.1111/geb.13296.&nbsp;&nbsp; &nbsp;https://github.com/osmiddleton/CarniDIET-Database/archive/0301492b944ad1ecf7e17199c96fa99a33d6ef91.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:24.726Z&nbsp;&nbsp; &nbsp;7ab55e7259d127ad368365baecf25c9504f60317b3e3e03f931ceed462330fb3&nbsp;&nbsp; &nbsp;0.12.2<br> pedroj/FRUBASE&nbsp;&nbsp; &nbsp;Jordano, Pedro (2013), Data from: Angiosperm fleshy fruits and seed dispersers: a comparative analysis of adaptation and constraints in plant-animal interactions, Dryad, Dataset, https://doi.org/10.5061/dryad.9tb73&nbsp;&nbsp; &nbsp;https://github.com/pedroj/FRUBASE/archive/ed685ad34c4bc40221fce273c94bfa3e34e84ddc.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:42:49.107Z&nbsp;&nbsp; &nbsp;0e5ac8d4bf52fc5b6d6b3302edcc6dae28bf9a6717b50a6c0223909eb86c1973&nbsp;&nbsp; &nbsp;0.12.2<br> pensoft/pensoft-interaction-tables&nbsp;&nbsp; &nbsp;OpenBiodiv. 2020. Annotated biotic interaction tables from Pensoft publications.&nbsp;&nbsp; &nbsp;https://github.com/pensoft/pensoft-interaction-tables/archive/83dd4fa1f4a641bb1f384c41cfe58e5143848279.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:46:31.889Z&nbsp;&nbsp; &nbsp;2439adf727deae06bb9adfc9c7705d2c2cb32aa9ce7678b1b6b2f61b13cde3af&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/Sceliphron&nbsp;&nbsp; &nbsp;Jakovos Demetriou and Quentin Groom 2014. Species associations of Sceliphron manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/5501760/files/qgroom/Sceliphron-v1.2.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:37.397Z&nbsp;&nbsp; &nbsp;5c040415d1b66641bd1958f688a5eb3604edfa4d54a17b648c2a1e7a920434ed&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/Vespa-velutina&nbsp;&nbsp; &nbsp;Cristina Preda and Quentin Groom. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/5501763/files/qgroom/Vespa-velutina-v1.0.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:50.361Z&nbsp;&nbsp; &nbsp;8a6265113d21d091d5272b5e42ffd190cc7639b0938e6c6e56b5c9d8fe0b75c8&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/bat-co-roosting-database&nbsp;&nbsp; &nbsp;Aja Sherman, Cullen Geiselman. 2021. Bat Co-Roosting Database&nbsp;&nbsp; &nbsp;https://github.com/qgroom/bat-co-roosting-database/archive/4d10e1fdaaee1586787e6774350648786edcf333.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:13.942Z&nbsp;&nbsp; &nbsp;8b0a129c807b6983292e7a028923ca67de716c61ead54d94c4648e4bb5c6fb06&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/batinterations&nbsp;&nbsp; &nbsp;Quentin J. Groom. 2020. Bat interation data manually extracted from literature.&nbsp;&nbsp; &nbsp;https://zenodo.org/record/3816676/files/qgroom/batinterations-v1.0.1.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:24.651Z&nbsp;&nbsp; &nbsp;eaa9696146c88345cfeb11b910f56e99c3795cd3adfad25761563c723fa3f60a&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/bedbugs&nbsp;&nbsp; &nbsp;Balv&iacute;n, O., Munclinger, P., Kratochv&iacute;l, L., &amp; Vil&iacute;mov&aacute;, J. (2012). Mitochondrial DNA and morphology show independent evolutionary histories of bedbug Cimex lectularius (Heteroptera: Cimicidae) on bats and humans. Parasitology Research, 111(1), 457-469.&nbsp;&nbsp; &nbsp;https://github.com/qgroom/bedbugs/archive/08dc6f22358670f7644f29f20419fa57846cceb5.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:29.224Z&nbsp;&nbsp; &nbsp;aad4ba6d8197a54708366d6c5ba6b72ec222b412a29d2940a028798416d90f7e&nbsp;&nbsp; &nbsp;0.12.2<br> qgroom/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/qgroom/template-dataset/archive/1beba309127b8b346fb07cd4c2184cbd1269c5e8.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:42.337Z&nbsp;&nbsp; &nbsp;362921e5a372e62c5794cc4edda36ad2949bcd1e5ecb42f2b6498408b63cbb23&nbsp;&nbsp; &nbsp;0.12.2<br> ramalok/PIDA&nbsp;&nbsp; &nbsp;Bjorb&aelig;kmo, M. F. M., Evenstad, A., R&oslash;s&aelig;g, L. L., Krabber&oslash;d, A. K., Logares, R. (2019) The planktonic protist interactome: emerging trends after a century of research. doi: https://doi.org/10.1101/587352&nbsp;&nbsp; &nbsp;https://github.com/ramalok/PIDA/archive/aae636f5c73830e5f0687382e938e359fb20f693.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:47:55.050Z&nbsp;&nbsp; &nbsp;d43dcc414ddb4cb3522fba37c0fc9269030f0ad8f183b9b909c10c2fbf6bc58f&nbsp;&nbsp; &nbsp;0.12.2<br> rnbehm/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, Katja C. 2020. Biotic species interactions about bees (Anthophila) manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/rnbehm/bee-interaction-database/archive/a72d9871749aa17d34f0c10a71afff75b8bb0460.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:00.496Z&nbsp;&nbsp; &nbsp;8c25c512302c693e56f235b43840244340747dd78d860001143c0545f42bcbd4&nbsp;&nbsp; &nbsp;0.12.2<br> seltmann/ParasiteTracker-Globi&nbsp;&nbsp; &nbsp;Jennifer Zaspel. 2018. Biotic species interactions manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/seltmann/ParasiteTracker-Globi/archive/ba5104744d9ddc69e7f2205202f9c7bfb18a5b0b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:10.609Z&nbsp;&nbsp; &nbsp;892da25516fef71a86914dddfa4d42fafea073fc86750d4139d778c3d34efe8b&nbsp;&nbsp; &nbsp;0.12.2<br> seltmann/bee-interaction-database&nbsp;&nbsp; &nbsp;Seltmann, Katja C. 2020. Biotic species interactions about bees (Anthophila) manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/seltmann/bee-interaction-database/archive/998a5853c2bec2b3950bd9857bfe79687db21f6d.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:05.646Z&nbsp;&nbsp; &nbsp;39882a0df1ea9154edafd17546a86cac6b5584ea347d7d85eb08f6a2fee4d2a7&nbsp;&nbsp; &nbsp;0.12.2<br> seltmann/template-dataset&nbsp;&nbsp; &nbsp;Jennifer Zaspel. 2018. Biotic species interactions manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/seltmann/template-dataset/archive/ba5104744d9ddc69e7f2205202f9c7bfb18a5b0b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:15.195Z&nbsp;&nbsp; &nbsp;892da25516fef71a86914dddfa4d42fafea073fc86750d4139d778c3d34efe8b&nbsp;&nbsp; &nbsp;0.12.2<br> seltmann/vampire-moth-globi&nbsp;&nbsp; &nbsp;Jennifer Zaspel. 2018. Biotic species interactions manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/seltmann/vampire-moth-globi/archive/ba5104744d9ddc69e7f2205202f9c7bfb18a5b0b.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:19.792Z&nbsp;&nbsp; &nbsp;892da25516fef71a86914dddfa4d42fafea073fc86750d4139d778c3d34efe8b&nbsp;&nbsp; &nbsp;0.12.2<br> seltmann/vampire-moths-and-their-fruit-piercing-relatives&nbsp;&nbsp; &nbsp;Jennifer Zaspel. 2018. Biotic species interactions manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/seltmann/vampire-moths-and-their-fruit-piercing-relatives/archive/bc1f53d113da3d20d58f5dc423690dccf1a19d0e.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:24.671Z&nbsp;&nbsp; &nbsp;94031ccd6a7bc41ef24825a07e9b6e25fdf639ebbfc5a5243394b2e3f9571591&nbsp;&nbsp; &nbsp;0.12.2<br> taddallas/EDWIP&nbsp;&nbsp; &nbsp;Failed inoculations indexed from negative.csv of Onstad, D.W. EDWIP: Ecological Database of the World&#39;s Insect Pathogens. Data provided by Onstad and transcribed by Tad Dallas .&nbsp;&nbsp; &nbsp;https://github.com/taddallas/EDWIP/archive/27e4887c11de34ea1f7ef19082be1d8bc7d66487.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:48:33.737Z&nbsp;&nbsp; &nbsp;80e2eb6849446807e1b3981fe4557ac9f65e4b66be2f8d56e9724b7f54bd143a&nbsp;&nbsp; &nbsp;0.12.2<br> thebateslab/mycoportal&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/thebateslab/mycoportal/archive/a6ba746e37a069986427c78b285b15514e90e18a.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:01.846Z&nbsp;&nbsp; &nbsp;465c9496c1b83be1a63aa62616e059138667d0fc9f311df7f16ab9dc25234fb8&nbsp;&nbsp; &nbsp;0.12.2<br> tkarim/paleo-interactions-test&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/tkarim/paleo-interactions-test/archive/5c20a5dd2535433e63560ac682eb98cba2738051.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:06.978Z&nbsp;&nbsp; &nbsp;fdc4f6778f26b13b59a5aef56bace2e6e565d6f9a5d6a43234342883e23835d4&nbsp;&nbsp; &nbsp;0.12.2<br> tkuhn/template-dataset&nbsp;&nbsp; &nbsp;Jorrit H. Poelen. 2014. Species associations manually extracted from literature.&nbsp;&nbsp; &nbsp;https://github.com/tkuhn/template-dataset/archive/5b617f69987124eb8b2a40d3917aac128070d53c.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:11.799Z&nbsp;&nbsp; &nbsp;b0532538ea26ee1ddc6b313e8c023cd5574cb1e389f2d2878b75bd523e26510a&nbsp;&nbsp; &nbsp;0.12.2<br> trias-project/eu-species-of-concern-interactions&nbsp;&nbsp; &nbsp;Quentin J. Groom. 2020. Species interactions of species on the List of invasive alien species of Union concern&nbsp;&nbsp; &nbsp;https://github.com/trias-project/eu-species-of-concern-interactions/archive/462cab89adb83000313a53f96795feffdd6a54a2.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:49:16.990Z&nbsp;&nbsp; &nbsp;1bc4af580547545a8c09a82e7e1f7ff39e5cfdb4546afef9fd84198fc031eaef&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/ballantyne2015&nbsp;&nbsp; &nbsp;Ballantyne, Gavin; Baldock, Katherine C. R.; Willmer, Pat G. (2015), Data from: Constructing more informative plant-pollinator networks: visitation and pollen deposition networks in a heathland plant community, Dryad, Dataset, https://doi.org/10.5061/dryad.17pp3&nbsp;&nbsp; &nbsp;https://github.com/zedomel/ballantyne2015/archive/1f266ae725eca68cfb1e32e7e528357ce139848a.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:50:35.230Z&nbsp;&nbsp; &nbsp;485b340ee3d2abdc55c49786c17532a9da326f72d730b5249ba38e13abe5ef56&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/bartomeus2008&nbsp;&nbsp; &nbsp;Bartomeus, Ignasi (2013): Plant-Pollinator Network Data. figshare. Dataset. https://doi.org/10.6084/m9.figshare.154863.v1&nbsp;&nbsp; &nbsp;https://github.com/zedomel/bartomeus2008/archive/eec4b05674efb0805a0222430d01f895e05767e8.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:50:42.207Z&nbsp;&nbsp; &nbsp;782c9183380036178bce804511f1c5ec411872af8a75d8862046ed18ec0756ce&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/caradonna2020&nbsp;&nbsp; &nbsp;CaraDonna, P.J. 2020. Temporal variation in plant-pollinator interactions, Rocky Mountain Biological Laboratory, CO, USA, 2013 - 2015 ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/27dc02fe1655e3896f20326fed5cb95f (Accessed 2021-04-16).&nbsp;&nbsp; &nbsp;https://github.com/zedomel/caradonna2020/archive/0581d5863c5a607d7fbbb446f6d581c2dcb19f33.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:50:47.380Z&nbsp;&nbsp; &nbsp;5301b3caf310193185d72b2cff71c84c299e3c7be81e40b909330446fff4b88b&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/magrach2017&nbsp;&nbsp; &nbsp;Magrach, Ainhoa et al. (2017), Data from: Plant-pollinator networks in semi-natural grasslands are resistant to the loss of pollinators during blooming of mass-flowering crops, Dryad, Dataset, https://doi.org/10.5061/dryad.k0q1n&nbsp;&nbsp; &nbsp;https://github.com/zedomel/magrach2017/archive/0a232001a23f11297d31653f58ef7cbdbc799e08.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:50:54.615Z&nbsp;&nbsp; &nbsp;7a45f733bb471ce0afc7a71aefef7b4a27499a406f029c9a42d2020d3de083df&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/olito2015&nbsp;&nbsp; &nbsp;Olito, Colin; Fox, Jeremy W. (2015), Data from: Species traits and abundances predict metrics of plant&ndash;pollinator network structure, but not pairwise interactions, Dryad, Dataset, https://doi.org/10.5061/dryad.7st32&nbsp;&nbsp; &nbsp;https://github.com/zedomel/olito2015/archive/dde6fe0d26220a466c068d8a3a97108b130585ba.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:51:02.356Z&nbsp;&nbsp; &nbsp;8a9c96ede06b8014a456688314bd0a1b7bf05b4d487141a9551694ed2c7964a2&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/portalier2018&nbsp;&nbsp; &nbsp;Portalier, Sebastien; Fussmann, Gregor; Loreau, Michel; Cherif, Mehdi (2018), Data from: The mechanics of predator-prey interactions: first principles of physics predict predator-prey size ratios, Dryad, Dataset, https://doi.org/10.5061/dryad.8c40mb0&nbsp;&nbsp; &nbsp;https://github.com/zedomel/portalier2018/archive/9efb19c56ed01f185e87bfd2463538397426d208.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:51:07.532Z&nbsp;&nbsp; &nbsp;614efd0406342196059278b81e09a4bb9ca920d5e3d1e6027571bf7985db314d&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/redhead2018&nbsp;&nbsp; &nbsp;Redhead, J.W.; Coombes, C.F.; Dean, H.J.; Dyer, R.; Oliver, T.H.; Pocock, M.J.O.; Rorke, S.L.; Vanbergen, A.J.; Woodcock, B.A.; Pywell, R.F. (2018). Plant-pollinator interactions database for construction of potential networks. NERC Environmental Information Data Centre. https://doi.org/10.5285/6d8d5cb5-bd54-4da7-903a-15bd4bbd531b&nbsp;&nbsp; &nbsp;https://github.com/zedomel/redhead2018/archive/89ca7296078cce01a293813e509700d6c05faabc.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:51:16.706Z&nbsp;&nbsp; &nbsp;1c7ea5a4d2cf7d51718723adaa2e36e0d936518921b7db8c02988cc37cacaa5c&nbsp;&nbsp; &nbsp;0.12.2<br> zedomel/udy2020&nbsp;&nbsp; &nbsp;Udy, Kristy; Reininghaus, Hannah; Scherber, Christoph; Tscharntke, Teja (2020), Data from: Plant-pollinator interactions along an urbanization gradient from cities and villages to farmland landscapes, Dryad, Dataset, https://doi.org/10.5061/dryad.4mw6m906s&nbsp;&nbsp; &nbsp;https://github.com/zedomel/udy2020/archive/beb0381fd18b562bf3c4fa609920aee03dda3f90.zip&nbsp;&nbsp; &nbsp;2021-11-13T04:51:22.110Z&nbsp;&nbsp; &nbsp;daa10b37c0a9ab3df5549b33d247897fcf1ba813af41968bb4a424341dec64a7&nbsp;&nbsp; &nbsp;0.12.2</p> <p>(content ids truncated, please see attached README)</p>

opencc-zeroDec 2018View details →
zenodo40/100

Global Biotic Interactions: Elton Dataset Cache NCBI Virus

<p>Global Biotic Interactions: Elton Dataset Cache NCBI Virus</p> <p>The intended use of this archive/cache is to allow for offline-enabled access versions of existing species interaction datasets. The program &quot;Elton&quot; (https://doi.org/10.5281/zenodo.998263) was used to populate the content of elton-datasets.tar.gz . The same program can be used to extract information from the cache archive also. Global Biotic Interactions (https://globalbioticinteractions.org,&nbsp;https://doi.org/10.1016/j.ecoinf.2014.08.005) also uses these archives to create derived species interaction data archives, search indexes&nbsp;and APIs.</p> <p>Please note that due to size considerations, offline-enabled access to an elton dataset cache of iNaturalist interaction data has been excluded from this publications and moved into a separate Zenodo publication at https://doi.org/10.5281/zenodo.3950546 .</p> <p>Contents<br> --------</p> <p>README:<br> this file</p> <p>elton-datasets.tar.gz:<br> versioned archive with species interaction datasets</p> <p>elton-datasets.tar.sha256:<br> content signature of elton-datasets.tar</p> <p>elton-datasets.tsv:<br> list of included datasets</p> <p>elton.jar:<br> commandline program to help access the species interaction datasets</p> <p>Usage<br> -----</p> <p>To install, extract elton-datasets.tar.gz into a directory of choice using:</p> <p>tar xfz elton-dataset.tar.gz</p> <p>To use, download elton.jar included&nbsp;this publication and execute the following to get a list of available datasets:</p> <p>java -Xmx4G -jar elton.jar datasets</p> <p>on a system that has java v8+ installed.</p> <p>If all goes well, you should be able to regenerate the included file elton-dataset.tsv .</p> <p>For more information on how to use elton.jar, execute:</p> <p>java -jar elton.jar usage</p> <p>or visit https://github.com/globalbioticinteractions/elton for more available commands.</p> <p>Alternatively, without using Elton, you can access the data by inspecting the access.tsv files in the various directories of the datasets directory.</p> <p>When using these datasets in a publication or product, please cite the *original* data providers and publications. You can find the citations in the data.</p> <p>Included datasets:</p> <p>globalbioticinteractions/ncbi-virus&nbsp;&nbsp; &nbsp;Eneida L. Hatcher, Sergey A. Zhdanov, Yiming Bao, Olga Blinkova, Eric P. Nawrocki, Yuri Ostapchuck, Alejandro A. Sch&auml;ffer, J. Rodney Brister, Virus Variation Resource &ndash; improved response to emergent viral outbreaks, Nucleic Acids Research, Volume 45, Issue D1, January 2017, Pages D482&ndash;D490, https://doi.org/10.1093/nar/gkw1065 . &nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/ncbi-virus/archive/531a8d743d7adcf1153a19087e5d3c5b76750e3e.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:25:31.596Z&nbsp;&nbsp; &nbsp;7ccb94a24adcb5af77ba7d72d04649ae0189b76eed5e9d4a86e2938d87a1353e&nbsp;&nbsp; &nbsp;0.12.2</p> <p>Associated content ids:</p> <p>hash://sha256/970526ccd38fe336a0c863fce9cc9967ed07c1ac1dbd7aa46b5a6abac1b77868<br> hash://sha256/c1612d2a43b12a1c2d5a93d8562428bcd802e316f45aefeed4bbc6afbd1529dd<br> hash://sha256/5008acd88c69cc63763c69d481b20042789ffd47b27968a731a6fe0d29ff1675<br> hash://sha256/609b4ee69df8728ce75f6d50c28fbdfe0a4280b38ce947c9f88a08c2d2b15c61<br> hash://sha256/2017cf4bb2b5ebadbfbb587e2532a400402830f633d70a2c7a82b31964a697ec<br> hash://sha256/1e38594c3210ce1bd13e7fee0643d0abd23aa3c4a8cb659d4108bff960e41ea9<br> hash://sha256/aaff351d4a7f3d2da4f8a742e05a6969a25490e553eedf3b1eded689e079fa0c<br> hash://sha256/3ae5b5cd979453c04e2dded1a7075eee1e7fe2f626eeef3f3150e80423c8e8b1<br> hash://sha256/eed5e9e44dd0b4b5c03aaa435589ee2a863c4544cc8ad5041ba7fb64e672068a<br> hash://sha256/3a68707a1933034666b40aff81df7dc4cde581b3bfc1cf60a82ef3339c091fe6<br> hash://sha256/785863eb02633a4d8fb5e7e261e40bd57fc3c6d24dbcb039e00097ae9e9501aa<br> hash://sha256/c48b8ce1c9069117fc063eaa9a06378b55ff0b3559bbb27bfde8bb1fa81699cf<br> hash://sha256/05c0d01bb92c8d69ec5843a7117d43a849aaae674225ed5ae18d76ba14650416<br> hash://sha256/2a7f1e738afdf09c709cd1c6b59c8d5345433f5ce4a4a0683e7703ace0be0fff<br> hash://sha256/5868c9331bb8dc82f7b463616857e4c3919c9621a9cb7481ee120a539a937fb4<br> hash://sha256/dcc2abe8d1ed3a0e62e57ff6d4afcd5475b8dd1e527b3da2a782ec7398a71a08<br> hash://sha256/094b503799330971b9909ccdd9cd2d1e51ecc4160ed5248b02c46b17b9031994<br> hash://sha256/4fda5e4d75695eec1217cf513568407690db37e3ce2a9d4cca1b9967f9fd5353<br> hash://sha256/df00f2e346125096fa6c7fcd9c63d1244c45cca1e869d8d4c9fd17f7de0e6821<br> hash://sha256/6fbb8b388756761961be45cb0c619914e410ef4d13644b493954445dd3c26f49<br> hash://sha256/116364b05fb932a0cee25c368248a8f2f0148c1ef38ed890a2daf67004c303de<br> hash://sha256/3d3b91a04809e2256e9b4a7df9e177af99796b23d5b95ef365c88905640433c2<br> hash://sha256/769c488df2bba90e7086eed8b1571377052255536cefa372504abec983e39c57<br> hash://sha256/a914033daabdb0b1c1bad82ffe1ea34890ce824f6a512335f1a08dfde7dd5203<br> hash://sha256/79b6f0ee918817222b6f1b71a110006f586170e6bfae7f824133adc50277900e<br> hash://sha256/b9ec52cc75379e2317f7e3f8185d3082aea6c6b2e22145284d4ace15ce07e2cd<br> hash://sha256/f3c120fa9c3ef7d037a05399264ecdfa70895c3414aeb9a2b022726dc91b1df0<br> hash://sha256/cf42a81450563fdb6cb1a59a8f615eda9639ca2555294f326940c655342a14f2<br> hash://sha256/0b023bffc085ca01eb69854e4fe281d2ae81223ed1485b9c74751523dc5de59e<br> hash://sha256/e10abb31046ced8122ab78ca743ebc9af88943638500d7d98c6eadb2c130109b<br> hash://sha256/979ca1b20ccc38e47a0d9cd9443784576112819b110b6a89df76feccd81e4992<br> hash://sha256/879c07f3192109f13f85f3550c9ece53b2001a5c5d0314aa261915bc53878444<br> hash://sha256/951775e4d47efead0297f20c55281be43989c72110b9de9bd2328fdedaad7c49<br> hash://sha256/905d6b50299242ae3b15f0022bdcc8d1063813be74fb767bec8df77cd9fae45b<br> hash://sha256/b8fb6ed7970cc19e92daaa1fcd2fd06ec7e390309e0a0be7775ed6981143a418<br> hash://sha256/788d0ee0e001b05c7a1f3ea8ce6dd8492c4cfa60c69ff8d641c9df76fec9b811<br> hash://sha256/753f23df2ea90267068b44a28a66a3f1e55e4f5bfee162e0bd311db7ec55b85a<br> hash://sha256/7110370ef6cb20ad9fdb93126b1e78fbe3ca31c54e09f456c9188c8abc7efdb8<br> hash://sha256/0d227d490b8c95ea15edd4bec3119cd29a0f02fceb501701815359740875c73a<br> hash://sha256/672a1e0cc42ce0847568822e8846c89b36d78fbc968afe53205b579a6e590d64<br> hash://sha256/bd81d95e9dafcd889c48fe1d8f58010b82c7ebffb961f3f5e7ca1c76bce43910<br> hash://sha256/c6a127579d7a35bb06134016ebd47cd8f7c363d8d6384d2279462c104b52f30a<br> hash://sha256/5a4b3f09d766149d0ee2b66f4438f2cd685b52fede8add90f12a11edd4e475c0<br> hash://sha256/14f827a5cba486a0a76a778d4cda136afbbb480f23e13235f26f800c69ff2f25<br> hash://sha256/e217f098561d2febe65f05535d9f2ae75322918b597bdefda58df662935107f0<br> hash://sha256/66a53b2670f6476f8072739c338b21d4e5c3dac88c63970ced2ced7050252d68<br> hash://sha256/2e9526ba3cfb63f1a5337c65660d0a683232cc6c968917f9b4c243644208c37a<br> hash://sha256/444f63ae611a5caa0e92957d6d47a3cbba031ac1464eb08fa4e750ecc958df08<br> hash://sha256/c4f142d9d5ef3b97bf179314a84e2cf761cf145fc4a6024cd64a74591ff74b70<br> hash://sha256/7d700718c5a3a357e17448987741fdc26f10df8307f58792148a69758ca4d124<br> hash://sha256/0f7235957918070ff246423b671a89a683bc49bb4c69a6e30809ecd0a8e340f4<br> hash://sha256/12c713c5eb7850058296586087820dd207d7743f5c001fefc8ce735a5be918fd<br> hash://sha256/9ab0b7c326a33c6ef4189f42931be535e65164f9fcccdc554495f4d6ea50277b<br> hash://sha256/ddabce2b42d73b4cc5547dc62bb36583a95f4d5ddd427d997fd8aa300aaec94f<br> hash://sha256/d314cf7cd40196ab19a089f0affff2240a750a68592ed7ebb011b563aac1201d<br> hash://sha256/11b717649cfd0edb4d15f9585c14701866d1988aa08823926b679dc04a3b63a5<br> hash://sha256/230fe4b782fdd2da9e5a8b54da89529cb272a0827924d818d59c2c9a76a663df<br> hash://sha256/22a7d9f762a426d47b6820c2dc1817999544e40f470e4c666b7c799d80047db7<br> hash://sha256/ec8f00eef7f6674075bd3836a07fc2f7ec215ac26d7d9c1d61b625246b5eb7f2<br> hash://sha256/aa1337e17b77fcf8de9a10abbf125656c5657e5d05a929b1c6c9b819d3a9db33<br> hash://sha256/81b8536bb74d6f83b1d92d1adbe67dfc8fb7469f0ebd49206edd97bdcba9f753<br> hash://sha256/b7d3fac62bc90135af7ad645cb9c93de8ecfe1ea847a64ab173fdd23640c6434<br> hash://sha256/dde878c75d9b415d0c618867d659a38959b5d255e363b607ed33f5c91a8ca61b<br> hash://sha256/69b54b8d2a2c93fbbd210cd58755f73b209bc13103ec51096554ec33d9bb06f3<br> hash://sha256/f945ad8a80d031b7abbc10ca730756e9e5a13b0c94b7e99c3abf3baed21f81e1<br> hash://sha256/a68f3b5e82db1fcd60e77a14188c03727a888032a0daa46002817436db749277<br> hash://sha256/988bab554ef51da265eeea67e66accde66ed769366442e7cd6699584a0fd9474<br> hash://sha256/8b900b7402e4ba48bf52897927731728518216ec15da3582fb4da01baed10fbe<br> hash://sha256/a5cd9163a822968f622d560578ea42ffcd34eadc926463839b9d9b9c1b82e7d9<br> hash://sha256/08477a4cdd137d95793ad5f346434e8303b806f20b3d5fc061b822e87e010b41<br> hash://sha256/3d14b290425e6387716e6fd87d2d4c9ab6ce971c6e1815bdb1e35cdc78a41cbd<br> hash://sha256/8bc976727931bae692b0df4a99657d8e2c05fa9f2befcc20cd6879e9659d92f4<br> hash://sha256/5456c9a193b8906974cb8a148b9ff3cd79ba07002d2ec1ebaf306b73360a41aa<br> hash://sha256/9d06979667bfc6e052a90fa9f1160c89ebeefd6ccb190aae953ab9e00cfb7896<br> hash://sha256/0075100a0a172ed5ee45afc28a661cbcb3cb7074401269d793a4e8d4530a8165<br> hash://sha256/efcad723a8d5d18bda33263b12b903d7dbfdbdefaaf809113a32d6383f69cb6d<br> hash://sha256/6d36966ce62097ae4548f703b1b7382bfe9cf2258e9b43b2d031bd86e49a51af<br> hash://sha256/4774455c518cf6c1461f89ccc0cb586708de8707523d19f9800b898e1cc488f6<br> hash://sha256/f6f50201927ae408cb077041d94ccfecbf877801ce03e60e4132b7a4cbe69541<br> hash://sha256/689418744ddb9ed3bab55625858f96c50a1cbfcaaf0a29fd33006da36b0fb169<br> hash://sha256/b670273d1df8d9a13eebc6cd22f38f9c3d2105f01651e498092de09cddef4cc9<br> hash://sha256/01837c9af8d87094b174e28dfed83259d8794bdd7c7bef5b73ec062365a2e215<br> hash://sha256/63c34e3f02d02400342a049c9ec57e767f2e0f4e98b31aa062da3be092c5971c<br> hash://sha256/474b0ed58fa3697ec7c23c7cd749b4e0b6decc6968119d166bc6c49112e8d8f8<br> hash://sha256/039af25dfafb06813b4c4ab1185a7bc6df4ae27ebc86d79c07ba08266251d672<br> hash://sha256/b6ad5082bd91038277d23b9de11551791b3f822bb8e889cdde4f8a6b629a6ae9<br> hash://sha256/123fc48ed2b5e988629f3208f82c70280dd88521986f8224b69fdf531aa4886a<br> hash://sha256/4ebc43a7b7e7412d549279bd48e4cef372d6c5bd7c507a90b0bcd9ccbea99f2f<br> hash://sha256/142e87d61c13f71ce1f9fc9acfda3e2b5deeaf8a7019b9b67f14c161d3cf311a<br> hash://sha256/4777e2a760aab92589d5cd79fca159e4dd726fb38c392a9af25103014b95c0d9<br> hash://sha256/decab6eee22a6fac3170a215c62cff8e16fb1c05948541a2a8f5630b82a2e782<br> hash://sha256/01720e183296ea042f38fc6a4449457548ba8d4e553a5c01e58affdc19c64dc3<br> hash://sha256/baa7c9c7f4778f3215561f4929f7f4c22dad54d286fafb999a1807e47f6914fd<br> hash://sha256/b9a97ff71aa4de2f86d014a0514ab4f9b575d4972a8af3dfa8379c57d7e75d14<br> hash://sha256/db54935070581c0c9968497b3fa8b907c63e9e555867ba52a1d45bd43deeeac0<br> hash://sha256/71b2113f4e85f3509c33b9104a3e97ce71466b788f8661ab86d917213070588a<br> hash://sha256/e78bf2a63eb403c2f66d7b45aac7560508c51bcd24918455fb2354019d7823f4<br> hash://sha256/6a35f3de50690778927e7a55488211c0f0c981aaa7a7280bfa88d79e4c54693d<br> hash://sha256/8042a9600fb8be95dac7dc03b78ef3059dc3c50109b0ddca6e6aff3964f622b0<br> hash://sha256/253bee7212797a6bf98f62f13f9020b2183d00d2e5c2135fe78536cdba2e217d<br> hash://sha256/e39476107cccb94a9caa91693fd84f150bd8a26ebb70c8660b73294d2c0405c8<br> hash://sha256/b57382250072167bb1e2c01ef25e4d643ac0dfb57b3bb7e346bf263dec1dd00c<br> hash://sha256/1bce9ba6e3a4ee00cf8287ccb06fb98811bcb1c02e3d0cf9316953f59fa5e74f<br> hash://sha256/ffad4d95334d50e4f2a80c7b5cc34931444a5781589d0c63568f4caf5e8452a9<br> hash://sha256/5b05dd8d778dc415a6274f97f47880412c517c4dfb866c489046281e2169a624<br> hash://sha256/354b43da6aaf40cea9897f7052ef8c293276c7c620faf78693571793a393fc7f<br> hash://sha256/64b7f5e25bc5634708492dd9e4980f4f49be6808f20fbef8e97e3e8d9b703f72<br> hash://sha256/e73254456d59c682014589358d3df047598445af7d4223f6e85dac1690630d74<br> hash://sha256/0f2d39f6b93ebe17856c032162a1d62e4b97f66ebfa77c51941197cf7901c6fb<br> hash://sha256/e49cd6ade75f1d00e03147e8c42fb78c33f156d97b1302087a6d36e0c9b9fe7b<br> hash://sha256/48c25cc3a9d5cf506d75724946b22cbbbc8361ecb8cd9c5fa302a2597195de29<br> hash://sha256/7ccb94a24adcb5af77ba7d72d04649ae0189b76eed5e9d4a86e2938d87a1353e<br> hash://sha256/dbf2ea546f58ea7d025e55682da3015f880efec20b795d81a362cd2923d34e9d<br> hash://sha256/2a3ead40be481704e2c842e65d78728177f4f5d30d138cb99b9e6186f6cf1138<br> hash://sha256/17811ec57ea36cde84e216e4cad51f99debefe1d6e56b48cf4ad2c6a3a8fce4f<br> hash://sha256/8ae4fd7ffe48aa74c17b03e373164263950ee9f79512c9fe2aefd26d375de6cd<br> hash://sha256/b7b0e31478f3924458a1fa4d5cf6aee095d52c6cc5800012106c4940f2a70fd9<br> hash://sha256/b8efc84fa95d8476f1389563844ff3a71c883c2b78a5e01e863c277249bf4375<br> hash://sha256/5010327567c99dbcb04ab228b6e95cc34a54125612399c2a485fec96553b86c7<br> hash://sha256/5768870c8bb03165049500d02aef5e41b3a803e47749a9921a02eb6821eed717<br> hash://sha256/e06c1635ac8971cd181ddbc4a00c462883efbcfa8414a424d6427fea90ac2971<br> hash://sha256/00cc52908976d7782849aa4021d5d4e13377c681b9fd803cf1eded3819e704e9<br> hash://sha256/3d66409052df5f0339563dcc0929318c082353fce9bfb2b34ec0cfd669b95e2c<br> hash://sha256/a2abb84755ec9062a9e9f21eac69a7fcaeba36796d438f64d2997ec7a2e4ccf5<br> hash://sha256/74eadc01253c54377de9be4a2723fde180c97aae33506ee96c6ee5342336588f<br> hash://sha256/d1a93dba8520b1291ac776d211cc3249a01d181cd984631ee0200a488fd72269<br> hash://sha256/7dd23990a21fe9bff06b6ca8d67a6757a7c1f393754795c823ad0a9d15112b0b<br> hash://sha256/4355451d60c5bb8fdc67465150f3ae1c759ff69431402a70061762c818998551<br> hash://sha256/ab2b340da3470e091db3e440c5b47c2b6ef03b68ab9f3da2ae8e0ee259b55faf<br> hash://sha256/57d92210ea7ffbedbabafaf23946aac933e9975ffca5418bd658b6a0bfdbdaf8<br> hash://sha256/7c90d3a6cbfec55d64f6687898bee0f0c6d364114cbcc8425988e567f5b037b7<br> hash://sha256/2c62bce04478162a9979c4c4921c295b2e1fe90bd85640edb4e810151a10ce04<br> hash://sha256/0c589d7c8e49f16c47ddec749a129d93b73a942a9759403cf9a5b86c62ad3219<br> hash://sha256/b7196079692d68c448f577791ef836fdb726b22ad1afb97347e30479fcdaa63f<br> hash://sha256/567fbbcf5778d08d3b568763e9c01916e4abbbe07e73656f91fed03fe7c86be1<br> hash://sha256/3aed400c94047c33b60d5067ce84674a0c5fc1d17a5a1d798275fdf7eeb9e83b<br> hash://sha256/d719c30065c81b69d6521053161a12c54026b531d315bc6fc44f13b964a97ce0<br> hash://sha256/d52214e9b4247a0fe4871d770299e34ccc9b42617200c80c1ba429bbd1691c00<br> hash://sha256/4af2ce941189bd37a132f9cd5c7f5847eb8d109b71d2cc380dc30d086cebd7b0<br> hash://sha256/6c924edde9feb8f250795e3edeba312b9cd7e67af2192f74da196da4eceb0a8f<br> hash://sha256/4d4dd1356e0dd4ca28a13b046fee7f32b1e9ec374dd4383f9b8294dc3dde42e6<br> hash://sha256/7a6c4107509bb07e400bc5bb85064c9af4dbad52a3a527f89117581993583a14<br> hash://sha256/6e295b1eefc353e09720948588b02feb6ee3e2854f8c4d69dc509859f92f147d<br> hash://sha256/bf0694bd458425e7863929ad8ca7773f0f64b4067bf861a63be2fea1c2e7d387<br> hash://sha256/88b1f8a6a8d0a8c45797eb242699a676f7803181def8454a0f51b6aed80db841<br> hash://sha256/0f1738394f6a40c09ed6279bcb4031ce7424384458f85df5fdc8b21eac2f5673<br> hash://sha256/c0b545033c24f5ce24f012dcb6fdb0c8de6891aa956c0bf3209d6e969c71bc6c<br> hash://sha256/f1dd8e4e8f41e4a01c425e736366a834336122f15f1a673414551c8ab885d95c<br> hash://sha256/9ce6de73361ff50f255996ed5bc7f194810a815af0e4a3f34707d97da9d3e6b5<br> hash://sha256/5a8294d186c2c7254f18639d55fcf087f20cb1c1b63d2959ab25644451c5f472<br> hash://sha256/8af5231989f996212f78d42a265865ce83eb858bdb14b43e697a64643c8de1c6<br> hash://sha256/202dfd38d632af449319be1492a603d2f32781d5a89ff19fac8b97a53108db96<br> hash://sha256/b26a55ec17999f5e08d1ec24367d8a45607a05bd3e3ed5c7839d0e685a29f496<br> hash://sha256/3ad8a44257a1fadd852b30398be4cef35b912f00f5391986d0001c2b289c580a<br> hash://sha256/12f7fdb5d84a925014dcfec131315931930ac70e193b3372f5efceee81de8c95<br> hash://sha256/ae31ef34ae7166c3d0768aabe5c5f406cd47c2f47f1e35bdf023faa54473d09e</p> <p>&nbsp;</p>

opencc-zeroNov 2021View details →
zenodo40/100

Global Biotic Interactions: Elton Dataset Cache Museum of Southwestern Biology and dependencies

<p>Global Biotic Interactions: Elton Dataset Cache Museum for Southwestern Biology and dependencies</p> <p>The intended use of this archive/cache is to allow for offline-enabled access versions of existing species interaction datasets. The program &quot;Elton&quot; (https://doi.org/10.5281/zenodo.998263) was used to populate the content of elton-datasets.tar.gz . The same program can be used to extract information from the cache archive also. Global Biotic Interactions (https://globalbioticinteractions.org,&nbsp;https://doi.org/10.1016/j.ecoinf.2014.08.005) also uses these archives to create derived species interaction data archives, search indexes&nbsp;and APIs.</p> <p>Please note that due to size considerations, offline-enabled access to an elton dataset cache of iNaturalist interaction data has been excluded from this publications and moved into a separate Zenodo publication at https://doi.org/10.5281/zenodo.3950546 .</p> <p>Contents<br> --------</p> <p>README:<br> this file</p> <p>elton-datasets.tar.gz:<br> versioned archive with species interaction datasets</p> <p>elton-datasets.tar.sha256:<br> content signature of elton-datasets.tar</p> <p>elton-datasets.tsv:<br> list of included datasets</p> <p>elton.jar:<br> commandline program to help access the species interaction datasets</p> <p>Usage<br> -----</p> <p>To install, extract elton-datasets.tar.gz into a directory of choice using:</p> <p>tar xfz elton-dataset.tar.gz</p> <p>To use, download elton.jar included&nbsp;this publication and execute the following to get a list of available datasets:</p> <p>java -Xmx4G -jar elton.jar datasets</p> <p>on a system that has java v8+ installed.</p> <p>If all goes well, you should be able to regenerate the included file elton-dataset.tsv .</p> <p>For more information on how to use elton.jar, execute:</p> <p>java -jar elton.jar usage</p> <p>or visit https://github.com/globalbioticinteractions/elton for more available commands.</p> <p>Alternatively, without using Elton, you can access the data by inspecting the access.tsv files in the various directories of the datasets directory.</p> <p>When using these datasets in a publication or product, please cite the *original* data providers and publications. You can find the citations in the data.</p> <p>Included datasets:</p> <p>globalbioticinteractions/msb-para&nbsp;&nbsp; &nbsp;Museum for Southern Biology (MSB) Parasite Collection&nbsp;&nbsp; &nbsp;https://github.com/globalbioticinteractions/msb-para/archive/54643c878313d7ccbf30325c713925d6c937fc9c.zip&nbsp;&nbsp; &nbsp;2021-11-13T01:22:28.662Z&nbsp;&nbsp; &nbsp;43a7e837b6e27532cc90eb50995fb4db169d0c8109aa27742cfabdedb3d390dc&nbsp;&nbsp; &nbsp;0.12.2</p> <p>Associated content ids:</p> <p>hash://sha256/567720ed6bc8ed0e73020eb1cefb601ce274715926f42ad3b22197e26f07dbd6<br> hash://sha256/3e401123bcfe9d67ffa149b3a5208c4d91e3291c56a089796287ab9f90a3aed9<br> hash://sha256/8b0e05281afa51031f25fdd9238a9a8df2beba81dbb71aee8f05fd1265e8216a<br> hash://sha256/072be68d48c9e841458a1f60da6e66173406a97af569a04953e8a06272c3f3f4<br> hash://sha256/69493156747f43e6dedd09bdfca0ae89a8e0c97183ce71f7c8a51965361d8529<br> hash://sha256/5dbc9eb2b059a72e13c9726ffb4b6af203361254d85cfa4b4ab59cfdb7bf8395<br> hash://sha256/3af388dbae61d93e6a4509b50c141ee8705f65f4fe4e05c37b30ce7f3f7fb4f4<br> hash://sha256/d0143cd7ad5cdb0f95215abf191a715533b6d275cdda9e0a43aeef4a02d9b8e2<br> hash://sha256/04ac42484f839523527ca89f789ea9a245eda78ee24e3b6b347ee65fd206c2c7<br> hash://sha256/744e69970ce7abcd36f5dd02acd61a44e37d58e8f7d33397ec9e9904eeea3d2c<br> hash://sha256/86810de51437c4ddfc8dc41f5596466cf5641c42f9c83e4f2bb237db61859458<br> hash://sha256/c663f9961506e3a28a7a3c50f35ef7a513bf0228fb1c78f89cb7b211b8ae68eb<br> hash://sha256/6d6d59bee1facb8b7b2d6240e508c93646ff2aba17b7a00f3a476019fe1a8d2f<br> hash://sha256/58f9279d56e59dd294abff0b56900900a1bc1e0a1bc5119a05262f89075ff9d0<br> hash://sha256/153bc89714d252f651a51dad1fd9fd10fdde9d011295f77a90d8b55bc4f41760<br> hash://sha256/23f1c12611580255165f8db31d1dc2603c1dec3f4785ea3133ec11148d3cea1c<br> hash://sha256/839a5b7c265ea594e4a5c60ffd4239f1340975b8f6869c0668887615aa263a51<br> hash://sha256/5911ce5014722d467b36390b382e0fadadbc4c08cbd9b7a83a0f1dba3cc4c179<br> hash://sha256/09d16992192bdfdb231d1fde9617324fc430ebfcba217a14cc79bd8d1d265323<br> hash://sha256/efdb2d5f7193aa602c01364f204672bb5ab79f9f10c24a7f3aa9b61c6d1ccc19<br> hash://sha256/696f9b2aba8218dd9163f3d3c3801c14f4393665538571a7e32681d942019425<br> hash://sha256/ae87389f2e17ce8ff0498c3560936fc3fd58529e2ea7aad6bcc475d871c407ad<br> hash://sha256/ea6dae042759a79708898316dedbd09ea64047e8f3ea0615b224e7fb488a778e<br> hash://sha256/e66b6bf4c14ab2899b57d05f5df3b3cbfe4fab4398a57201fb079ae728ad939a<br> hash://sha256/48c68b584b7da5276e3e768bf544db23870fc151c5886d60a8343f312b74ff59<br> hash://sha256/699058a028a4512f384ed12905540b6da152c801eb933dfb8bb7327cbf320028<br> hash://sha256/063a01cd7142498db39254d64491a64aad9763063c145a6255758ec855317ab5<br> hash://sha256/d54d6ebf28db71aac9ecb478a853814aea88b2d444a28c8f41d483bdfa658ddb<br> hash://sha256/2dd6224800ba4213e25f8dbcaad4415f8a79e64ea58837933765e07cb76b440b<br> hash://sha256/9c6c4c4e65211805d5313fca8db474c259bb7f78ae8c913c22f363894093ea97<br> hash://sha256/ccf0ba861d0baf4b07ec98d8d316e20907701640207a30c8e028d453bff8315a<br> hash://sha256/f84efb0fa65e992000ed88286a46b5002be5b86746e55193a443f0207fc03e19<br> hash://sha256/7f3a60aa646cfff30f9f7b3d7f6bc245ffd8d0adf9756b23912055beb9ef55fe<br> hash://sha256/4630f1b8f75ed2b72eb207eee0a5e162b69827a78d4863feacb4251a8971acc5<br> hash://sha256/33cfafb530c1bf922233cb2bbab8fae6432d933f49b664e427d26fa83d2f1512<br> hash://sha256/58f78efc777c0c98da94f08ae6a7b4086ce443da38c48484a797f7fa48f2d33e<br> hash://sha256/9e679f22382daf80f43bb40730da24c063bc93648ca690f670aa7759e0738815<br> hash://sha256/9bdd72c9c1c46658cbbff27e72d11aac337d0df7c6bed27ad2bbe9eb3674716f<br> hash://sha256/73876364b30e626104b38ce78b7300e3aef0034c93b9a8617553cc3096ec634a<br> hash://sha256/54724f55de92e8c0972857c9a8c9025aa6732c95bc2b82bf7059a2b94e2dbb97<br> hash://sha256/25e60c85d5a3d0dc99e75c0bc914871fb887b93d2face8a13b268fed40701ae2<br> hash://sha256/3cf9036536595ad0f610eebdbb0e71cdcd5e592ef8fe92a292c3432d8003c91d<br> hash://sha256/f14f46b619a5a4bc3c54817686dee2616e04b4d28f6a1bcb8ce42f92a23763d1<br> hash://sha256/c5685f62023f0c7598f4c0df0c1c6abd88cd69099c1a2270e2326c92414ae8d5<br> hash://sha256/192833e421861ea60be772d27e6ae4d77894e15bdd7bec9d82334131d2fa340b<br> hash://sha256/123c530d39a6208ceb98aac89ad454d274fb87f4df3ffafb3cfd1cc4131671e3<br> hash://sha256/e6834acbab2fc2e8226ea13a50193f3298bc56cdcc5b795bf9a327cf1128e68e<br> hash://sha256/75f0fab12bf9692f0088f1ac8877708d0f1f6c52acc688c62462d12f9a3127b2<br> hash://sha256/f361208cdd53f4535908c6d575cac1bf677920fd52ad499ac46b5bcc0dbf60e7<br> hash://sha256/8ba38f7587a85f3bfb0a07d82ccc6cff69bc586dabd3c93139c3e9e5752aa1d9<br> hash://sha256/29840fa2e69b15b9913af921f2a738602f51a457d4cd92a8dee79562a4875d94<br> hash://sha256/2b5cb320b5ee4d345bf3b9fdf3648954b4cbce3b2f822d488a7bb92ab52ef171<br> hash://sha256/d80303453592038c485247966d611c13ca6304f03d44f0bc9756097a275fbc13<br> hash://sha256/0e7f50547be1add0b78c29f36a66e471ee04909a4775b31e0868d320a7877e15<br> hash://sha256/128453c25acb3b1ed0112df1a119e67f5098ab8f0b038412733b34a9deeec1bb<br> hash://sha256/7955d7aa5eac29a40ccebd3d09bf1f7623d8fd3709f442a0f4049998845bf8f9<br> hash://sha256/b00ebcb02f6c9003d35acaca8db452fb8be77b5def2203e9a2a6c860b3ef9ed7<br> hash://sha256/1e07f7d60fccfddd7d4938a73dc93e2962d6bdf61bedaca32312c8071b22fa19<br> hash://sha256/0ec454267c227b8d7d06c2eebb1d6dd7140f4197ab7d944b244fd644afee245b<br> hash://sha256/702a1d6815edbbfd1e2a786122b5359c3c1ba46d27d19dfe2705a9d0c3059123<br> hash://sha256/9b1e465dba409878106d5d84d62ffc8f412bbae42a648941813b5adbdf4890fa<br> hash://sha256/db78a1b182ce789d4a1c7ee9f782a990156aa61099b5ef52666ccc72e885272c<br> hash://sha256/ce6f124d4c453b4826a739790bff863f115371beb366b95525f1e964819c29f5<br> hash://sha256/f2ada98d942e74ad2b6ec2d3be65ef5c2671bc7039a3227669e8008870f3d7f9<br> hash://sha256/3a01949c722555b7d2fa3b37e2b82f51069ca9a82869fc1ea3529ad2e6279c9a<br> hash://sha256/03cdbb0d8700b7168e867a4bc35c066d6b8eeebd1307f34958771a6338872450<br> hash://sha256/6bdaaf47da035a48089ce14a0fda9cc8463f4ca74750abeb1c344ef04df75aca<br> hash://sha256/9b2a1d1f8b5fd74144e96713cf06a4fcb190fb2bf723f3cd92765724535539b0<br> hash://sha256/cf16607263c6837d8a93a466a8bf29b0719b0365a43376cb1fae080e4bc9614d<br> hash://sha256/e236a814bb9ff501c3698c372a686d5670ca497f861cee33118d4cc674eeb80b<br> hash://sha256/4e9f328a987fa31ec8333d204cc7cadc932fb463f0db6cad6d4257d16b5f9e00<br> hash://sha256/5cfc5c4b73104beaca2d7ee8b8b50990fb9f9ca8332f83d4068cc1f6c15d1cb5<br> hash://sha256/43a7e837b6e27532cc90eb50995fb4db169d0c8109aa27742cfabdedb3d390dc<br> hash://sha256/6c7ab7ee6d514d04e6d3d2fe79a1f239cec16d1ebee5b011a0f337c0c626eb7e<br> hash://sha256/e7382124a168d5613639c47530989b3112139d2f7b1ad3b9653d62decc10ce02<br> hash://sha256/e1c4b54e4c18b4c02534e6d69b3fd57fd630d00521f876efb719ae2d90f5573a<br> hash://sha256/bfbd47b31dff20ec483e26d86af1f38aa035f6ec6a4e62825e8b7fbb538a527f<br> hash://sha256/b2107f28fe9f4a168a526a2e5472ef553e0a1fed8094065647791f4829a51cfc<br> hash://sha256/3d0c8b1be95ca4a0382defe8de96853968a8a7cd94b3d9f4915218a7bb771c8f<br> hash://sha256/94b4bb1651e9816c9137c143c05523d8c452a04ae2a39a3085a8e8463cfeb2cb<br> hash://sha256/123b670ed12662dcc150fa4a1d391d5d81d5d57ed2101b0ded844dd42269fb9e<br> hash://sha256/c7dea0890e8c778c6c79119c599ef606543a612e5d9a9b35b1bc08720a7c37d1<br> hash://sha256/aff80b8f578430099dd9a8489d68195f6ec058167ff43b59a20b273c07dc69f4<br> hash://sha256/d63841cd03e9bd1edd28d4e89d3f412d5b9117cd2b80350ce38a03e12cd15066<br> hash://sha256/6b1b6f3c4cd166d5d1f087ccde996a948af776ddae8c6c9a4ecaa9028b244e60<br> hash://sha256/fa73a979f6d3ec020459b03298e42fef1d0be399466867e2258c94da1d7613e3<br> hash://sha256/6146fc9c3c0a9f766d41ee08f699eaa6f0e3f171f72feb2d40e8a1edf61ab84d<br> hash://sha256/fe72c48d094f0273bd6580a956f2d60ef2802e298c888239e5df2b889c146e30<br> hash://sha256/31e61eb8035b01508dd70200426bc5154af7ac07451dc839dcc2207654ba68de<br> hash://sha256/4b9c2d0063393cca67d88f218a44f049bb42f8e86e15b4c16f8dd14b4992e8f4<br> hash://sha256/ae937100bd982bf7a819697e69070b5a7bb1644b39740688f05c220f70c74b43<br> hash://sha256/625167a97ffcbf26472e83eb5fbaceb05f86c1455b0aa94da8571de47bf85a44<br> hash://sha256/9aef51a74e2b126dd9bfa1f71f27a543f194c00e7fcf62b395622aaf81c80483<br> hash://sha256/47c512872f98bff639301f94624b6ca2629d7101b60590c30eed0b5be1e91204<br> hash://sha256/f2641d07959a26a487402b8ecce89901544738d978df0e63c49c00b7f9ab5611<br> hash://sha256/1159d5e19ff063ef5f227ff6c950b59c6378143fe459a24bec36bd6a8fbe12a5<br> hash://sha256/424de30fdbe18f274d28db4c5f5e6ef081c44d3f6b7714e32e046f7de642d298<br> hash://sha256/496447e9c0811a36feb7d190c813efa09d206fafdf6d9cc68c09245e7f316e57<br> hash://sha256/0f2c716e681269f34913e5ddbbc647c9e0f36e5d27eff281bd6b8361cf871ed2<br> hash://sha256/d0f27eee87549aa3e90870cc2e1b1e54c3c10c1964330d7844e6e6752a3b0d1c<br> hash://sha256/28484ec162403ea23c7561ae45bd36c1aa52d55be578607bb786a7d8d1e02269<br> hash://sha256/d71a5cc1eda721d6f3d8731b5462fb762b7e5c072784369ca440f2d20b9878df<br> hash://sha256/c8b68936c1d28557014a44614d0411340c09de8ce4c60caf0f1e2e646ba4d41a<br> hash://sha256/60a3f89e8de272a1644df63a901c691eaf363e91f1272514aee0842fb9f84a31<br> hash://sha256/1cda2cd112c4cf4f50c9b3bc5153ee5dd4a78ad8710f5061d6b11a2a9a1d9fdc<br> hash://sha256/c8cefec1e4887114447399a029618d55205971fcd2a7ee869be23813313cae64<br> hash://sha256/936254bb17c1a33bc97eac8dc04e3b5d8291e849de80c637f093b6167837c959<br> hash://sha256/9081f272a2a1dc66381c7820b87c5906f32d48ad5cedbbf16d030963462e5b8f<br> hash://sha256/99c92a63299da8009f2a136578aebfc53e15e98d66c8b94fb1c7617322540ac0<br> hash://sha256/3fefef7655c6ca85cf040c49d3a6e996ff26d44b9243dcb45793ce9b8758ba34<br> hash://sha256/6ef502b8caf8a1dafa7f9f446f435dee40e2c7620cbe2c1440ae0b50ea6aaea6<br> hash://sha256/f86896e5952a8e849d4d5aad1600cbe8a6b097781c7678fe176827aa83899917<br> hash://sha256/e82bc4cda775fcceeaff88ae8ded371d80986049f19856f91d85e64c9e7f1cf9<br> hash://sha256/7726cf33ee3c8f5fc0a49e552b055832e4f18768bb392adfbdb78f46ed397583<br> hash://sha256/b586c1f7edea105a6ea26fa2756143bba090ab6edc633a8d8c32345d16f46b09<br> hash://sha256/80ed6a98fbe409e6f71f1fbcc50d63fa54ec1497827698868cddaf363c6a41ef<br> hash://sha256/4e4421617af98d502e5a962eabfb45476e463aefe39e917297e9b9743ab4d199<br> hash://sha256/8e40691d83323b1bae6d7b6792823e02ca5fbca78f1d10bb9ba9fe0d018cf77f<br> hash://sha256/8b433c524c64958465c894ee40ec4675e15fca70a3bb26c41f6487b3edc6436d<br> hash://sha256/2dd2b611faaf0ae571992d4f44032010dc9a16b52cb3eac2c6cc1eb75a4d4069<br> hash://sha256/636a65ce9b8ff30bac73e32474d19441ce41af107bdf9228ed17cc6d68374451<br> hash://sha256/dda0cffa375ef2326e6170fc9853ef038a135e5b065a251432bff5f323fa85a2<br> hash://sha256/2328b5e346e2e7cba9cabeddc740962151850e6213ae27c6b24b39efe9df9821<br> hash://sha256/bab68ce5461cca9d223f8330cf1f768805318fa8b6e0af7da1042b78364310a5<br> hash://sha256/22baff13b3465c843731d54e05a00bb7913b4c64f6b655b3f112f71157851938<br> hash://sha256/02e60e1070686c67de54d5b4e36ea4faedf21b64bbc66afdea8d2ec10e7bcba4<br> hash://sha256/45ede12efbaefa88d58a0f65a5d5218e4b2d9a96e073dc96e82d9fd7a8e681a6<br> hash://sha256/bf0a250e665bb620a0777b369c65af1d3950a773435464552fd1cd85159d2510<br> hash://sha256/0f0885a27ff7d752f6707eb6f563f704ae5d346c256b83d0855d2f981eed7f89</p> <p>&nbsp;</p>

opencc-zeroNov 2021View details →
zenodo40/100

Transcription factors in moss development and defenses against abiotic and biotic stress_dataset

<p>Lists of <em>P. patens</em>&nbsp;genes encoding transcription factors belonging to AP2/ERF, bHLH, GRAS, MYB, NAC and WRKY families differentially expressed in transcriptomes related to response to biotic interactions, abiotic stress, and hormones.</p>

opencc-by-4.0Dec 2021View details →
dryad40/100

Zooplankton recovery from a whole‐lake disturbance: Examining roles of abiotic factors, biotic interactions, and traits

<p>Community assembly following disturbance is a key process in determining the composition and function of the future community.  However, replicated studies of community assembly at whole ecosystem scales are rare.  Here, we describe a series of whole-lake experiments in which the recovery of zooplankton communities was tracked following an ecosystem-scale disturbance, i.e., application of the piscicide, rotenone.  Using a BACI design, fourteen lakes in eastern Washington were studied: seven lakes were treated with rotenone, while seven lakes acted as reference systems.  Each lake was monitored up to six months before and one to two years after the rotenone treatments.  Zooplankton samples and environmental measurements were collected approximately monthly from each lake. Community responses following disturbance were assessed using metrics of abundance, diversity, and community composition, as well as taxonomic group abundance.  Zooplankton recovery was also assessed using species traits related to habitat, feeding mode, trophic level, body size, and life history.  In addition to patterns of recovery, potential mechanisms were explored relating to abiotic conditions, biotic interactions, and traits. There were steep declines in the abundance (average across years: 99%) and diversity (average across years: 75%) of the zooplankton community following rotenone treatment.  Although abundance had recovered by the second year of the study, community diversity had not fully recovered after two years.  Communities from rotenone lakes appeared to be compositionally recovered within about eight months following disturbance. Cyclopoid copepods were typically the first group to recover, and remained dominant for a few months, whereas cladocerans recovered more slowly, typically within ~6-7 months following rotenone. Calanoid copepods were not fully recovered two years after rotenone treatment. Traits related to body size and feeding mode were associated with the zooplankton communities following rotenone treatment. We failed to observe significant spatial synchrony in recovery patterns of zooplankton across lakes, though we did observe significant synchrony of zooplankton taxonomic groups within lakes.  These findings suggest that traits related to ecological function, and to a lesser extent, biotic and abiotic factors, as well as characteristics of the disturbance itself, may be important in helping to understand recovery processes. </p>

opencc-zeroDec 2021View details →
zenodo40/100

Data from: Recovering wetland biogeomorphic feedbacks to restore the world's biotic carbon hotspots

<p>These datafiles are part of a study that reviews how feedbacks between geomorphology and landscape-building vegetation underlie carbon storage and sequestration, and how feedback disruption can switch wetlands from carbon sinks into sources carbon stocks. Included ecosystems: ocean, forests, peatlands, mangrove forests, salt marshes, and seagrass meadows. Data were collected from other studies.</p> <p>Additional information regarding the methods, references or results of these datasets can be found in: Ralph J.M. Temmink, Leon P.M. Lamers, Christine Angelini, Tjeerd J. Bouma, Christian Fritz, Johan van de Koppel, Robin Lexmond, Max Rietkerk, Brian R. Silliman, Hans Joosten, Tjisse van der Heide. 2022. Recovering wetland biogeomorphic feedbacks to restore the world&rsquo;s biotic carbon hotspots. <em>Science</em>.</p> <p>&nbsp;</p>

opencc-by-4.0Dec 2021View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated datasets

Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record