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.
13,397
datasets available to search
ShareScore release 0.9.0
Dataset results
13,397 results for “sp. nov.”
FIG. 3 in Bryophytes from Uei tepui (Serra do Sol), with liverworts new to Brazil and the description of Leptoscyphus incisus sp. nov.
FIG. 3. — Liverworts new to Brazil. A-G, Frullania mirabilis J.B.Jack & Steph: A, leaf on stem, dorsal view; B, leaf on stem, ventral view; C, flattened leaf, dorsal view; D, lobules with appendix; E, appendix of lobule; F, lobule without appendix; G, underleaf. H-L, Colura rhynchophora Jovet-Ast: H, sector of a stem with perianth; I, apex of a perianth keel; J, leaf; K, valve; L, base of valve. A-G from Viana et al. 6273; H-L from Viana et al. 6260. Scale bars: A-C, G, H, J, 250 µm; D, E, 100 µm; F, I, K, L, 50 µm.
FIG. 2 in Bryophytes from Uei tepui (Serra do Sol), with liverworts new to Brazil and the description of Leptoscyphus incisus sp. nov.
FIG. 2. — Uei tepui (Serra do Sol). A, B, general view of the study area; C-F, vegetation types at the top of the mountain.
FIG. 5 in Morphological and molecular taxonomy of Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov., and P. iranense, sp. nov., from Iran
FIG. 5. — Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov. (IRAN 16695 F, holotype): A, terminal hyphal swelling; B, intercalary hyphal swelling; C, D, monoclinous antheridia with inflated or non-inflated antheridial stalks and antheridial cells attached to oogonia; E, monoclinous antheridium originated from swollen part of oogonial stalk; F, monoclinous antheridium and intercalary oogonium with two oospores; G, intercalary oogonium provided with two onoclinous antheridia; H, diclinous antheridium and intercalary oogonium;I, sessile diclinous antheridium with constriction attached to oogonium; J, chain of ogonia and hyphal swelling; K, plerotic oospores; L, aplerotic oospore; M, peanut-shaped oospore; N, double oospore. Scale bars: A, 10 µm; B-E, 5 µm F-N, 10 µm.
FIG. 2 in Morphological and molecular taxonomy of Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov., and P. iranense, sp. nov., from Iran
FIG. 2.— Neighbor-joining tree of Pythium Pringsheim clades F and G species inferred from partial coxI sequences. Bayesian/maximum parsimony/neighborjoining posterior probabilities and bootstrap support values are given at the nodes. – indicates support <50% for a particular clade. Pythium minus Ali-Shtayeh (CBS 22688) from clade E was used as outgroup. Scale bar: 0.01 substitutions.
FIG. 1 in Morphological and molecular taxonomy of Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov., and P. iranense, sp. nov., from Iran
FIG. 1.— Neighbor-joining tree of Pythium Pringsheim clades F and G species inferred from complete ITS region sequences. Bayesian/maximum parsimony/ neighbor-joining posterior probabilities and bootstrap support values are given at the nodes. – indicates support <50% for a particular clade. Pythium minus AliShtayeh (CBS 22688) from clade E was used as outgroup. Scale bar: 0.1 substitutions.
FIG. 3 in Morphological and molecular taxonomy of Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov., and P. iranense, sp. nov., from Iran
FIG. 3.— Neighbor-joining tree of Pythium Pringsheim clade J1 species inferred from complete ITS region sequences. Bayesian/maximum parsimony/neighborjoining posterior probabilities and bootstrap support values are given at the nodes. – indicates support <50% for a particular clade. Phytopythium litorale (Nechw.) Abad, de Cock, Bala, Robideau, Lodhi & Lévesque (CBS 118360) was used as outgroup. Scale bar: 0.1 substitutions.
FIG. 6 in Morphological and molecular taxonomy of Pythium monoclinum Abrinbana, Abdollahz. & Badali, sp. nov., and P. iranense, sp. nov., from Iran
FIG. 6.— Pythium iranense Badali, Abrinbana & Abdollahz., sp. nov. (IRAN 16697 F, holotype): A, terminal hyphal swelling; B, monoclinous antheridium and terminal oogonium; C, two diclinous antheridia attached to oogonium; D, antheridium with wavy stalk and oogonium; E, sessile diclinous antheridium and terminal oogonium; F, antheridial cell with constriction; G, bell-shaped sessile monoclinous antheridium and terminal oogonium on short side branch; H, antheridia attached to oogonium; I, J, crowd of antheridia around oogonia; K, lateral oogonium; L, plerotic and aplerotic oospores; M, peanut-shaped oospore; N, double oospore; O, quadruple oospore; P, oogonium with three papilla; Q, R, immature oospores with projections. Scale bars: A-M, 10 µm; N-R, 5 µm.
Figure 2 in THE ENTOLOMATACEAE OF THE PAKARAIMA MOUNTAINS OF GUYANA VII: ENTOLOMA DICYMBOPHILUM SP. NOV. AND A KEY TO GUYANESE SPECIES OF ENTOLOMA S. STR.
Figure 2. Microscopic features of Entoloma dicymbophilum Largent & T.W.Henkel, sp. nov. A, basidiospores; B, basidia and basidioles; C, pileipellis and subtending trama; D, pileus trama. All photographs of the holotype, Henkel 9740, taken by D. L. Largent. Scale bars: A and B, 10 μm; C and D, 50 μm.
Figure 1. Entoloma dicymbophilum Largent & T.W in THE ENTOLOMATACEAE OF THE PAKARAIMA MOUNTAINS OF GUYANA VII: ENTOLOMA DICYMBOPHILUM SP. NOV. AND A KEY TO GUYANESE SPECIES OF ENTOLOMA S. STR.
Figure 1. Entoloma dicymbophilum Largent & T.W.Henkel, sp. nov. A, Field habit, off-white to cream basidiomata with exposed lamellae, Upper Potaro Basin, Guyana; B, immature basidioma (lateral view). Each scale bar, 20 mm. Photographs of the holotype, Henkel 9740, taken by Todd Elliott (A) and Terry Henkel (B).
Figure. Litsea anamalayana Robi & Udayan, sp. nov. A, Flowering twig; B, twig with unopened umbels; C, brachyblast with opened umbels; D, female flowers (close-up); E, tepals; F, outer eglandular staminodes and inner glandular staminodes; G, gynoecium; H, early stage of fruit setting; I, mature fruits. Photographs: A. J. Robi. in LITSEA ANAMALAYANA (LAURACEAE) A NEW SPECIES FROM NELLIYAMPATHY HILLS, INDIA.
Figure. Litsea anamalayana Robi & Udayan, sp. nov. A, Flowering twig; B, twig with unopened umbels; C, brachyblast with opened umbels; D, female flowers (close-up); E, tepals; F, outer eglandular staminodes and inner glandular staminodes; G, gynoecium; H, early stage of fruit setting; I, mature fruits. Photographs: A. J. Robi.
Fig. 10 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 10. Parasitoid Taiwanon sp. (Diptera: Bombyliidae) and parasitism of Myrmeleon trigonois Bao & Wang, 2006. A – pupa of Taiwanon sp., lateral view; B – pupa of Taiwanon sp., ready to emerge; C – living adult of Taiwanon sp.; D – remains of M. trigonois pupa (photos by Yuchen Zheng).
Fig. 6 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 6. Myrmeleon trigonois Bao & Wang, 2006, adult. A – part of habitus; B – head, frontal view; C – head and thorax, dorsal view; D–E – male terminalia (D – lateral view, E – ventral view); F–G – female terminalia (F – lateral view; G – ventral view); H–L – male genitalia (H – ventral view, I – anteroventral view, J – caudal view, K – lateral view, L – dorsal view).
Fig. 14 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 14. Distribution map of Myrmeleon shalulianus Zheng & Liu sp. nov. and M. trigonois Bao & Wang, 2006.
Fig. 7 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 7. Myrmeleon trigonois Bao & Wang, 2006, habitus of 3rd instar larva (A – dorsal view, B – ventral view, C – lateral view).
Fig. 2 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 2. Types of Myrmeleon trigonois Bao & Wang, 2006 based on BAO & WANG (2006). A – holotype, male; B – one of paratypes, treated as M. shalulianus Zheng & Liu sp. nov.; C – photos of all type specimens of M. trigonois, red box indicates the holotype, yellow box indicates all paratypes treated here as M. shalulianus sp. nov.
Fig. 13 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 13. Molecular phylogeny of selected species of Myrmeleontidae based on COI barcoding sequence data. Tree topologies are identical among the Bayesian inference, Maximum likelihood, and Neighbour-joining analyses. Nodal supports include the posterior probabilities of Bayesian inference/ bootstrap values of Maximum likelihood analysis/bootstrap values of Neighbour-joining analysis.
Fig. 5 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 5. Myrmeleon shalulianus Zheng & Liu sp. nov., habitus of 3rd instar larva: A – dorsal view, B – ventral view, C – lateral view.
Fig. 4 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 4. Myrmeleon shalulianus Zheng & Liu sp. nov., adult. A – part of habitus; B – head, frontal view; C – head and thorax, dorsal view; D–E – male terminalia (D – lateral view, E – ventral view); F–G – female terminalia (F – lateral view; G – ventral view); H–L – male genitalia (H – ventral view, I – anteroventral view, J – caudal view, K – lateral view, L – dorsal view).
Fig. 11 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 11. Taiwanon sp., female. A – dorsal view; B – lateral view; C – wing; D – head, dorsal view; E – head, lateral view; F – head, lateral view; G – abdomen, dorsal view. (Photos by Haoyue Zhou).
Fig. 3 in Myrmeleon shalulianus sp. nov. (Neuroptera: Myrmeleontidae), and the first record of Taiwanon bee fly (Diptera: Bombyliidae) on Myrmeleon trigonois in China
Fig. 3. Habitus of adults.A–B – Myrmeleon shalulianus Zheng & Liu sp. nov.:A – male, holotype; B – female, holotype, Hutiaoxia, Yunnan, type locality. C–D – M. trigonois Bao & Wang, 2006: C – male, Danba, Sichuan; D – female, Lixian, Sichuan.
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.