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Figure 2 from: Heintz-Buschart A, Guerra C, Djukic I, Cesarz S, Chatzinotas A, Patoine G, Sikorski J, Buscot F, Küsel K, Wegner C-E, Eisenhauer N (2020) Microbial diversity-ecosystem function relationships across environmental gradients. Research Ideas and Outcomes 6: e52217. https://doi.org/10.3897/rio.6.e52217
Figure 2 Overview of the sample collection. Decomposition, as a central soil function, and the biodiversity of involved microbial communities will be studied in a large, international monitoring network (sampling locations indicated in a) to assess the generality of microbial biodiversity-function relationships across climates (mean annual air temperature and annual precipitation in b) and land use and cover types (c).
Figure 1 from: Heintz-Buschart A, Guerra C, Djukic I, Cesarz S, Chatzinotas A, Patoine G, Sikorski J, Buscot F, Küsel K, Wegner C-E, Eisenhauer N (2020) Microbial diversity-ecosystem function relationships across environmental gradients. Research Ideas and Outcomes 6: e52217. https://doi.org/10.3897/rio.6.e52217
Figure 1 A Environmental change and heterogeneity determine the biodiversity and the functioning of ecosystems (modified after Eisenhauer et al. 2016). In addition, changes in biodiversity can have significant effects on ecosystem functioning, which can be masked by strong environmental gradients. Only by accounting for environmental heterogeneity can the role of biodiversity for ecosystem functioning be wholly realized (Grace et al. 2016). B Hypothesized positive relationship between microbial diversity and decomposition (overall positive relationship with confidence intervals; no real data was used to create this figure). The diversity gradient in soil microbes is supposed to be caused by different environmental conditions. The different grey lines indicate BEF relationships across different experimental and environmental gradients.
Supplementary material 6 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
Value Map for Content Directors
Supplementary material 1 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
The Solution Builders Audience Profile
Supplementary material 3 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
The Policy/ Society Influencers Audience Profile
Supplementary material 5 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
Value Map for Solution Builders
Supplementary material 2 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
The Content Directors Audience Profile
Supplementary material 4 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
The Researcher Audience Profile
Supplementary material 8 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
Value Map for Researchers
Supplementary material 7 from: Chodacki J, Habermann T, Hendricks G, Kaiser K, Kemp J, Meadows A, Paglione L, Pentz E, Ratner H, Reeves P, Schneider J, Stacey S, Urberg M (2020) Metadata 2020 Workathon Proceedings - Sept 2019. Research Ideas and Outcomes 6: e52878. https://doi.org/10.3897/rio.6.e52878
Value Map for Policy/ Society Influencers
Figure 2. A–H Mesosternal keel SEMs A Cephennium anophthalmicum Brendel B Cephennium celsifrons Hopp & Caterino C Cephennium mariposae Hopp & Caterino D Cephennium grandarboreum Hopp & Caterino E Cephennium canestroi Hopp & Caterino F Cephennium gilberti Hopp & Caterino G Cephennium urbanum Hopp & Caterino H in Seven new species of Cephennium Müller & Kunze (Coleoptera, Staphylinidae, Scydmaeninae, Cephenniini) from California with a key to native North American species
Figure 2. A–H Mesosternal keel SEMs A Cephennium anophthalmicum Brendel B Cephennium celsifrons Hopp & Caterino C Cephennium mariposae Hopp & Caterino D Cephennium grandarboreum Hopp & Caterino E Cephennium canestroi Hopp & Caterino F Cephennium gilberti Hopp & Caterino G Cephennium urbanum Hopp & Caterino H Cephennium aridum Hopp & Caterino.
Fig. 6. Male morphology. A–B, E–G in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 6. Male morphology. A–B, E–G. Head capsule in frontal view. C–D. Mesosoma, lateral view. H–I. Petiole, ventrolateral view. — A. Probolomyrmex indet. (Madagascar, CASENT0080551, A. Nobile). B. Anochetus boltoni (Madagascar, CASENT0063847, A. Nobile). C. Leptanilloides gracilis (Guatemala, CASENT0234561, M. Borowiec). D. Odontomachus simillimus (Seychelles, CASENT0172666, A. Nobile). E. Platythyrea arthuri (Mayotte, CASENT0132466, E. Prado). F. Protanilla indet. (Thailand, CASENT0119776, A. Nobile). G. Stigmatomma indet. (Madagascar, CASENT0007087, E. Prado). H. Nothomyrmecia macrops (Australia, B. Boudinot). I. Neoponera cf. apicalis (Honduras, B. Boudinot). Scale bars: A, F–G= 0.1 mm, B = 0.2 mm, C = 0.25 mm, E, H–I = 0.5 mm, D = 1.0 mm.
Supplementary material 1 from: Galasso G, Domina G, Adorni M, Angiolini C, Apruzzese M, Ardenghi NMG, Assini S, Aversa M, Bacchetta G, Banfi E, Barberis G, Bartolucci F, Bernardo L, Bertolli A, Bonali F, Bonari G, Bonini I, Bracco F, Brundu G, Buccomino G, Buono S, Calvia G, Cambria S, Castagnini P, Ceschin S, Dagnino D, Di Gristina E, Di Turi A, Fascetti S, Ferretti G, Fois M, Gentili R, Gheza G, Gubellini L, Hofmann N, Iamonico D, Ilari A, Király A, Király G, Laface VLA, Lallai A, Lazzaro L, Lonati M, Longo D, Lozano V, Lupoletti J, Magrini S, Mainetti A, Manca M, Marchetti D, Mariani F, Mariotti MG, Masin RR, Mei G, Menini F, Merli M, Milani A, Minuto L, Mugnai M, Musarella CM, Olivieri N, Onnis L, Passalacqua NG, Peccenini S, Peruzzi L, Pica A, Pinzani L, Pittarello M, Podda L, Prosser F, Ravetto Enri S, Roma-Marzio F, Rosati L, Sarigu M, Scafidi F, Sciandrello S, Selvaggi A, Spampinato G, Stinca A, Tavilla G, Toffolo C, Tomasi G, Turcato C, Villano C, Nepi C (2020) Notulae to the Italian alien vascular flora: 9. Italian Botanist 9: 47-70. https://doi.org/10.3897/italianbotanist.9.53401
Supplementary data
Supplementary material 1 from: Bartolucci F, Domina G, Andreatta S, Angius R, Ardenghi NMG, Bacchetta G, Ballelli S, Banfi E, Barberis D, Barberis G, Bernardo L, Bertolli A, Bonari G, Bovio M, Briozzo I, Buccomino G, Calvia G, Chianese G, Cibei C, Conti F, Copez M, Crisanti A, Dagnino D, Di Filippo A, Esposito A, Fanni S, Festi F, Forte L, Galasso G, Gentili R, Gottschlich G, Lattanzi E, Liguori P, Locci MC, Longo D, Lonati M, Lucchese F, Marchetti D, Mariotti MG, Menini F, Minuto L, Orrù G, Pala ML, Passalacqua NG, Pellegrino M, Pennesi R, Peruzzi L, Pinzani L, Pirastru G, Prosser F, Ravetto Enri S, Roma-Marzio F, Russo G, Scoppola A, Silletti G, Stinca A, Toffolo C, Tomaselli V, Tondi G, Trenchi M, Turcato C, Nepi C (2020) Notulae to the Italian native vascular flora: 9. Italian Botanist 9: 71-86. https://doi.org/10.3897/italianbotanist.9.53429
Supplementary data
Figure 1 from: Martellos S, Bartolucci F, Conti F, Galasso G, Moro A, Pennesi R, Peruzzi L, Pittao E, Nimis PL (2020) FlorItaly – the portal to the Flora of Italy. PhytoKeys 156: 55-71. https://doi.org/10.3897/phytokeys.156.54023
Figure 1 Taxon page for Poa annua L. from FlorItaly [accessed on 18 June 2020]. The page lists taxon name, synonyms, distribution, also depicted in a distributional map, taxonomic position (in this case in the APG IV scheme), an image, links to external resources, Italian names, and a photo gallery.
Figure 1 from: Yao G, Song Z-Q, Xue B-E, Shi S, Li Y-L, Luo S-X (2020) Taxonomic revision of the genus Glochidion (Phyllanthaceae) in Taiwan, China. PhytoKeys 159: 137-159. https://doi.org/10.3897/phytokeys.159.54839
Figure 1 A holotype of Glochidion assamicum var. magnicapsulum Croiatz & Hara (A. Henry 117, A) B holotype of G. kusukusense Hayata (B. Hayata & S. Sasaki s.n., TI) C lectotype of G. lanceolatum Hayata (T. Makino s.n., TI) D holotype of G. chademenosocarpum Hayata (B. Hayata s.n., TI) E isotype of G. rubrum Blume (C.L. von Blume s.n., NY) F isolectotype of G. suishaense Hayata (B. Hayata s.n., TI).
Figure 4 from: Yao G, Song Z-Q, Xue B-E, Shi S, Li Y-L, Luo S-X (2020) Taxonomic revision of the genus Glochidion (Phyllanthaceae) in Taiwan, China. PhytoKeys 159: 137-159. https://doi.org/10.3897/phytokeys.159.54839
Figure 4 Glochidion lanyuense Gang Yao & S.X. Luo, sp. nov. (based on the holotype, drawn by Y.X. Liu) A habit B ovary and style C female flower D male flower.
Figure 3 from: Yao G, Song Z-Q, Xue B-E, Shi S, Li Y-L, Luo S-X (2020) Taxonomic revision of the genus Glochidion (Phyllanthaceae) in Taiwan, China. PhytoKeys 159: 137-159. https://doi.org/10.3897/phytokeys.159.54839
Figure 3 Holotype of Glochidion ovalifolium F.Y. Lu & Y.S. Hsu. (F.Y. Lu & Y.S. Hsu 242, NCAI!).
Figure 5 from: Yao G, Song Z-Q, Xue B-E, Shi S, Li Y-L, Luo S-X (2020) Taxonomic revision of the genus Glochidion (Phyllanthaceae) in Taiwan, China. PhytoKeys 159: 137-159. https://doi.org/10.3897/phytokeys.159.54839
Figure 5 Morphological comparison between Glochidion lanyuense Gang Yao & S.X. Luo and G. lanceolatum Hayata A, C, E, G, I, LG. lanyuenseB, D, F, H, J, K, MG. lanceolatumA, B female flower C, D ovary and style E, F pedicle of female flower G, H general view of style I–K female flowers (shown by arrowheads) L, M fruit. Scar bars: 1 mm (A–H); 3 mm (I–K); 5 mm (L).
Figure 2 from: Yao G, Song Z-Q, Xue B-E, Shi S, Li Y-L, Luo S-X (2020) Taxonomic revision of the genus Glochidion (Phyllanthaceae) in Taiwan, China. PhytoKeys 159: 137-159. https://doi.org/10.3897/phytokeys.159.54839
Figure 2 General morphology of GlochidionA–CG. acuminatum var. acuminatum Müll. Arg D, E, HG. ellipticum Wight F, GG. lanceolatum Hayata I–KG. philippicum (Cav.) C.B. Rob L, PG. puberum (L.) Hutch M–OG. rubrum Blume Q–SG. zeylanicum var. zeylanicum (Gaertn.) A. Juss T–VG. zeylanicum var. tomentosum Trimen A, D, F, I, M, R, T female flowers B, E, J, S, U male flowers C, G, H, K, N–Q, V fruits L female flowers and male flowers N male flowers and fruits. Photographs: A–C, F, G, I–K, M–O, Q–U by A. Kawakita (Kyoto University, Japan) D–E, H, L, P by G. Yao V Z.Q. Song.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research 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.
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.
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.
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.
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.