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.
2,775
datasets available to search
ShareScore release 0.7.1
Dataset results
2,775 results for “G×E”
Figure 8 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 8 Species of Phyllopsora occurring in Asia and Melanesia. APhyllopsoraneofoliata (Weerakoon WL21) BP.parvifolia (Kistenich & Weerakoon SK1-661) CP.parvifoliella (James & Wolseley 2491). Scale bars: 2 mm.
Supplementary material 1 from: Galasso G, Domina G, Ardenghi NMG, Aristarchi C, Bacchetta G, Bartolucci F, Bonari G, Bouvet D, Brundu G, Buono S, Caldarella O, Calvia G, Cano-Ortiz A, Corti E, D'Amico FS, D'Antraccoli M, Di Turi A, Dutto M, Fanfarillo E, Ferretti G, Fiaschi T, Ganz C, Guarino R, Iberite M, Laface VLA, La Rosa A, Lastrucci L, Latini M, Lazzaro L, Lonati M, Lozano V, Luchino F, Magrini S, Mainetti A, Manca M, Mugnai M, Musarella CM, Nicolella G, Olivieri N, Orrù I, Pazienza G, Peruzzi L, Podda L, Prosser F, Ravetto Enri S, Restivo S, Roma-Marzio F, Ruggero A, Scoppola A, Selvi F, Spampinato G, Stinca A, Terzi M, Tiburtini M, Tornatore E, Vetromile R, Nepi C (2019) Notulae to the Italian alien vascular flora: 7. Italian Botanist 7: 157-182. https://doi.org/10.3897/italianbotanist.7.36386
: Data type: species data
Supplementary material 1 from: Bartolucci F, Domina G, Alessandrini A, Angiolini C, Ardenghi NMG, Bacchetta G, Banfi E, Bolpagni R, Bonari G, Bräuchler C, Calvia G, Cancellieri L, Cannucci S, Carruggio F, Conti F, Cavallaro V, Fanfarillo E, Ferretti G, Festi F, Fiaschi T, Foggi B, Forte L, Fröhner SE, Galasso G, Gestri G, Gottschlich G, Labadessa R, Lastrucci L, Lazzaro L, Mereu G, Morabito A, Mugnai M, Musarella CM, Orsenigo S, Pazienza G, Pennesi R, Peruzzi L, Pierini B, Podda L, Prosser F, Rossi G, Scoppola A, Spampinato G, Stinca A, Tomaselli V, Zangari G, Nepi C (2019) Notulae to the Italian native vascular flora: 7. Italian Botanist 7: 125-148. https://doi.org/10.3897/italianbotanist.7.36148
: Data type: species data
FIGURE 3. Egg variation. A, G. Dorsal view. B, E. Ventral view. C, F in New species of Pachyphloea Redtenbacher, 1906 (Phasmida: Pseudophasmatidae Xerosomatinae) with comments on Grylloclonia Zompro, 2004 n. syn.
FIGURE 3. Egg variation. A, G. Dorsal view. B, E. Ventral view. C, F. Anterior pole.
Figure 3 from: Poli A, Bovio E, Verkley G, Prigione V, Varese GC (2019) Elbamycella rosea gen. et sp. nov. (Juncigenaceae, Torpedosporales) isolated from the Mediterranean Sea. MycoKeys 55: 15-28. https://doi.org/10.3897/mycokeys.55.35522
Figure 3 Elbamycellarosea sp. nov.: 28-days-old colonies at 21 °C on ACMASWBCMASSC PDASW D PDASS; 28-days-old colonies at 10 °C on ECMASWFCMASSG PDASW H PDASS.
Figure 2 from: Poli A, Bovio E, Verkley G, Prigione V, Varese GC (2019) Elbamycella rosea gen. et sp. nov. (Juncigenaceae, Torpedosporales) isolated from the Mediterranean Sea. MycoKeys 55: 15-28. https://doi.org/10.3897/mycokeys.55.35522
Figure 2 Elbamycellarosea sp. nov. A, D group of young subglobose ascomata B, C globose ascomata with one or two necks E immature (bottom) and dehiscent (top) asci F ascoma in cross section G mature ascus with 8 ascospores H ascospores. Scale bars: 50 µm (A, D, F); 100 µm (B, C); 10 µm (E, G, H).
Figure 1 from: Poli A, Bovio E, Verkley G, Prigione V, Varese GC (2019) Elbamycella rosea gen. et sp. nov. (Juncigenaceae, Torpedosporales) isolated from the Mediterranean Sea. MycoKeys 55: 15-28. https://doi.org/10.3897/mycokeys.55.35522
Figure 1 Phylogenetic inference of Elbamycellarosea sp. nov. based on a combined nrSSU and nrLSU dataset. The tree is rooted to Xylariahypoxylon. Branch numbers indicate BPP/MLB values; Bar = expected changes per site (0.03).
F I G U R E 2 in Machine learning for image based species identification
F I G U R E 2 Comparison between biological and artificial neuron and networks
Figure 8 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 8 A–F Sterile cells in LactifluusG, H marginal cells in Lactifluus with striking resemblance to different sterile cells AL.persicinus from Delgat et al. (2017)B, DL.bicapillus from De Crop et al. (2019)C 'leptocystidia' from (Verbeken and Walleyn 2010) EL.caliendriferFL.russulisporusGL.caliendriferHL.albomembranaceus from (De Crop et al. 2016). Scale bar: 10 µm, arrows indicate basidioles.
Figure 7 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 7 A–C Sterile elements of Lactifluusrussulisporus, full arrows indicate septa of sterile elements, hollow arrows indicate a basidiole or basidium. A–B Protruding sterile cells, holotype, RH 9398 C not-protruding sterile element, RH 9674. Scale bar: 10 µm.
Figure 5 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 5 A–C Microscopic characters of LactifluuscaliendriferA basidiole and sterile elements, KW 392 B spores, holotype, KW 378 C marginal cells, holotype, KW 378. Scale bar: 10 µm.
Figure 3 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 3 A–D Microscopic characters of LactifluusrussulisporusA marginal cells, RH 9764 B marginal cells, holotype, RH 9398 C basidiole and sterile elements, holotype, RH 9398 D spores, holotype, RH 9398. Scale bar: 10 µm.
Figure 2 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 2 Overview Maximum Likelihood tree of Lactifluussubg.Gymnocarpi, based on ITS sequence data. Maximum Likelihood bootstrap values >70 are shown.
Figure 4 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 4 Microscopic features of LactifluusrussulisporusA section through the pileipellis B pileipellis hairs C pseudocystidia D basidia E marginal cells F sterile elements from the hymenium G basidiospores. Illustrations by G. Dierickx and A. Verbeken. Scale bars: 10 µm.
Figure 1 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 1 A–BLactifluusrussulisporus basidiomes C–DL.caliendrifer basidiomes A holotype, RH 9398 B RH 9674 C holotype, KW 378 D KW 392.
Figure 6 from: Dierickx G, Froyen M, Halling R, Wisitrassameewong K, Delgat L, De Crop E, Verbeken A (2019) Updated taxonomy of Lactifluus section Luteoli: L. russulisporus from Australia and L. caliendrifer from Thailand. MycoKeys 56: 113-32. https://doi.org/10.3897/mycokeys.56.35204
Figure 6 Microscopic features of Lactifluuscaliendrifer. A section through the pileipellis B pileipellis hairs C sterile elements from the hymenium D basidia E basidiospores F marginal cells G pseudocystidia. Illustrations by M. Froyen, G. Dierickx and A. Verbeken. Scale bar: 10 µm.
Supplementary material 1 from: Tőzsér D, Tóthmérész B, Harangi S, Baranyai E, Lakatos G, Fülöp Z, Simon E (2019) Remediation potential of early successional pioneer species Chenopodium album and Tripleurospermum inodorum. Nature Conservation 36: 47-69. https://doi.org/10.3897/natureconservation.36.32503
: Data type: statistical data
Supplementary material 1 from: Stinca A, Chianese G, D'Auria G, Fascetti S, Ravo M, Romano VA, Salerno G, Astuti G, Bartolucci F, Bernardo L, Bonari G, Bouvet D, Cancellieri L, Carli E, Caruso G, Catalano I, Cennamo GD, Ciaschetti G, Conti F, Di Pietro R, Fortini P, Gangale C, Lapenna MR, Lattanzi E, Marcucci R, Peccenini S, Pennesi R, Perrino EV, Peruzzi L, Roma-Marzio F, Scoppola A, Tilia A, Villani M, Rosati L (2019) Contribution to the floristic knowledge of eastern Irpinia and Vulture-Melfese area (Campania and Basilicata, southern Italy). Italian Botanist 8: 1-16. https://doi.org/10.3897/italianbotanist.8.37818
: Data type: species data
Figure 1 from: Stinca A, Chianese G, D'Auria G, Fascetti S, Ravo M, Romano VA, Salerno G, Astuti G, Bartolucci F, Bernardo L, Bonari G, Bouvet D, Cancellieri L, Carli E, Caruso G, Catalano I, Cennamo GD, Ciaschetti G, Conti F, Di Pietro R, Fortini P, Gangale C, Lapenna MR, Lattanzi E, Marcucci R, Peccenini S, Pennesi R, Perrino EV, Peruzzi L, Roma-Marzio F, Scoppola A, Tilia A, Villani M, Rosati L (2019) Contribution to the floristic knowledge of eastern Irpinia and Vulture-Melfese area (Campania and Basilicata, southern Italy). Italian Botanist 8: 1-16. https://doi.org/10.3897/italianbotanist.8.37818
Figure 1 Location of study area and sampling sites (for details, see Suppl. materials 1: S2 and S3_1–S3_8).
Figure 1 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/italianbotanist.3.13303
Figure 1 - Individual in bud of Crepis lacera subsp. titani on limestone cliffs of Monte Titano (San Marino Republic). Photograph by L. Peruzzi.
ScienceDex guides
Understand access before you commit
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.