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.
4,937
datasets available to search
ShareScore release 0.9.0
Dataset results
4,937 results for “Endemic species”
FIGURE 9. Taraxacum fornicatum. General habit and a in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE 9. Taraxacum fornicatum. General habit and a capitulum detail (PRA, no. det. 36068). Scale bar = 2 cm.
FIGURE. Taraxacum paludosiforme. General habit of plants with deeply divided leaves (PRA, no. det. 35936). Scale bar = 2 cm. in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE. Taraxacum paludosiforme. General habit of plants with deeply divided leaves (PRA, no. det. 35936). Scale bar = 2 cm.
FIGURE. Achenes of Bulgarian members of Taraxacum sect. Obliqua. A, T. benevolens (PRA, no. det. 27323, isotype); B, T. blandum (PRA, no. det. 35752, holotype); C, T. chrysocephalum (PRA, no. det. 35769, isotype); D, T. pyrenaicum subsp. balcanicum (PRA, no. det. 35905). Scale bars = 1 mm. in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE. Achenes of Bulgarian members of Taraxacum sect. Obliqua. A, T. benevolens (PRA, no. det. 27323, isotype); B, T. blandum (PRA, no. det. 35752, holotype); C, T. chrysocephalum (PRA, no. det. 35769, isotype); D, T. pyrenaicum subsp. balcanicum (PRA, no. det. 35905). Scale bars = 1 mm.
FIGURE 7. Taraxacum splendens. General habit and a in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE 7. Taraxacum splendens. General habit and a detail of young capitulum (PRA, no. det. 26176). Scale bar = 2 cm (general habit).
FIGURE. Taraxacum paludosiforme. General habit of plants with shallowly lobed leaves (PRA, no. det. 35940). Scale bar = 2 cm. in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE. Taraxacum paludosiforme. General habit of plants with shallowly lobed leaves (PRA, no. det. 35940). Scale bar = 2 cm.
FIGURE 4 in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE 4. Taraxacum bulgaricum. General habit of a plant collected in the Rila Mts. (PRA, no. det. 27378). Scale bar = 2 cm.
FIGURE. Taraxacum bulgaricum. General habit of cultivated plants from the Pirin (PRA, no. det. 30153). Scale bars = 2 cm. in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE. Taraxacum bulgaricum. General habit of cultivated plants from the Pirin (PRA, no. det. 30153). Scale bars = 2 cm.
FIGURE 0 in A hotspot of endemism: Oreophytic Taraxacum species (Compositae, Crepidinae) in the mountains of Bulgaria
FIGURE 0. Achene variation in Taraxacum paludosiforme. A, B (PRA, no. det. 26364); C, (PRA, no. det. 26387); D (PRA, no. det. 33575). Scale bars = 1 mm.
FIGURE 6 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 6. Holotype of Goggia matzikamaensis sp. nov., MCZ R-192186, (A) dorsal view, (B), ventral view, depicting coloration in preservative.
FIGURE 5 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 5. Head scalation in Goggia incognita sp. nov., CAS 224022 (A) vs. Goggia lineata, CAS 85927 (B) and MCZ R- 45427 (C). Note smaller snout and crown scales in G. lineata.
FIGURE 3 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 3. Bayesian phylogeny of Goggia, based on analysis of ND2, RAG1, and PDC nucleotide sequence data. Branch support values (Bayesian/ML) are listed for all interspecific and major intraspecific nodes. The most distant outgroup, Phyllodactylus xanti, is omitted for clarity.
FIGURE 1 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 1. Goggia species in life, depicting pattern variation in small-bodied species. (A) Goggia lineata from Garies, Northern Cape, striped form. (B) Goggia lineata from Port Nolloth, Northern Cape, chevron form. (C) Goggia incognita sp. nov. from Jacobsbaai, Western Cape, striped form. (D) Goggia incognita sp. nov. from Doringbaai, Western Cape, chevron form. (E) Goggia hexapora from Farm Waterval, Western Cape. (F) Goggia matzikamaensis sp. nov. MCZ R-192186. Photo credits: (A) André Coetzer. (B) Luke Kemp. (C, D) Tony Gamble. (E, F) Matthew Heinicke.
FIGURE 4 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 4. Holotype of Goggia incognita sp. nov., CAS 224022, (A) dorsal view, (B) ventral view, depicting coloration in preservative.
FIGURE 7 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 7. Head scalation in Goggia matzikamaensis sp. nov., MCZ R-192186 (A) and SAM 47802 (B) vs. Goggia rupicola, MCZ R46168 (C) and CAS 192442 (D). Note smaller, non-hexagonal scales above orbits in G. matzikamaensis sp. nov.
FIGURE 2 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)
FIGURE 2. Geographic ranges of Goggia species and sampling localities of specimens included in the study. Countries are labeled in large white text, provinces of South Africa in small white text, and key geographic regions in small black italic text. Colored shaded regions depict overall ranges of species with localities inside these regions; note that shade colors are used twice as follows: red—braacki (east), gemmula (west); yellow—essexi (east), lineata (west); green—hewitti (east), matzikamaensis sp. nov. (west); blue—hexapora, microlepidota (fully overlapping); violet—incognita (south), rupicola (north).
FIGURES 24–26 in On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)
FIGURES 24–26. Hoplia dubia species group. Comparison between the shape of protoracic tarsi (right leg, ventral view), length uniform. 24, Hoplia dubia (Marina di Vecchiano); 25, H. meridiana (R. N. O. Bosco Pantano di Policoro); 26, H. messapia (Cesine, Le Vernole). A stouter structure, with broader tarsomeres and claw, is evident in H. meridiana (courtesy of Daniele Baiocchi and Lara Gallina).
FIGURES 18–23 in On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)
FIGURES 18–23. Hoplia dubia species group. Details of scutellar area in oblique (18, 20, 22) and dorsal (19, 21, 23) view, male specimens. 18–19, Hoplia dubia (Marina di Vecchiano); 20–21, H. meridiana (Policoro); 22–23, H. messapia (Torre Mozza). Note the difference between scutellar setae (thin in H. dubia, thick in H. meridiana and H. messapia) and the differences on the relation between the setae of scutellum and periscutellar setae of elytra (reciprocally similar for length and thickness in H. dubia and H. meridiana, different in H. messapia as the scutellar setae are short and thick and the elytral setae long and thin).
FIGURES 9–11 in On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)
FIGURES 9–11. Habitus of Hoplia messapia in dorsal and lateral view. 9, male (Cesine, Le Vernole); 10, female (Torre Mozza); 11, male (Cesine, Le Vernole).
FIGURES 7–8 in On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)
FIGURES 7–8. Hoplia meridiana, extremes of variability in the habitus of males (the more typical color form shown in Fig. 4). 7, dark integument and extensively green scales, with metallic sheen (Capaccio, Varolato Beach). 8, rare phenotype with dark integument and unusually reduced scales (Isola di Capo Rizzuto, contrada Sovereto).
FIGURES 34–38 in On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)
FIGURES 34–38. Hoplia messapia in nature from Vernole, Le Cesine. 34, male on a Tamarix inflorescence, 20.V.2011 (courtesy of Maurizio Pavesi); 35–37, males clustering on the top of grasses and on dry Juncus infructescences, 21.V.2011 (courtesy of Maurizio Bollino); 38, habitat of the species, 7.VI.2003 (courtesy of Giuseppe De Matteis).
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.