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.”
FIGURES 2–10. Figures 2–5. pronotum, ventral view. 2 in Rudogorites simonei gen. nov. and sp. nov. from Central Bosnia (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURES 2–10. Figures 2–5. pronotum, ventral view. 2, Rudogorites simonei sp. nov., male. 3, Rudogorites simonei sp. nov., female. 4, Charonites scheibeli, female. 5, Charonites matzenaueri, male. Figure 6, elytra surface detail Rudogorites simonei sp. nov., male. Figures 7–8, thorax ventral view, mesothoracic apophysis are indicated with white arrow, sutures between mesosetrnum and mesepisternum are indicated with grey arrow. 7, Rudogorites simonei sp. nov., male. 8, Charonites matzenaueri, male. Figures 9–10, thorax lateral view, ventral edge of mesosternal keel is indicated with black arrow. 9, Rudogorites simonei sp. nov., male. 10, Charonites matzenaueri, male.
FIGURES 17–24. Figures 17–20. Antenna. 17 in Rudogorites simonei gen. nov. and sp. nov. from Central Bosnia (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURES 17–24. Figures 17–20. Antenna. 17, Rudogorites simonei sp. nov., male. 18, Rudogorites simonei sp. nov., female. 19, Charonites scheibeli, female. 20, Charonites matzenaueri, male. Figures 21–23, metatergal apparatus, posterior process is indicated with black arrow. 21, Rudogorites simonei sp. nov., male. 22, Charonites matzenaueri, male. 23, Charonites scheibeli, female. Figure 24, metendosternite, Rudogorites simonei sp. nov., male.
FIGURE 4. A–F in Zaitzevia tangliangi sp. nov. a new riffle beetle from China (Coleoptera:Elmidae Macronychini)
FIGURE 4. A–F. Water environment of the type locality of Zaitzevia tangliangi sp. nov.: Houhe N. R., Hubei, China.
FIGURE 3 in Zaitzevia tangliangi sp. nov. a new riffle beetle from China (Coleoptera:Elmidae Macronychini)
FIGURE 3. Diagnostic features of Zaitzevia tangliangi sp. nov. (A–D & F male, E & G female). A. Aedeagus, dorsal view; B. Same, lateral view; C. Same, ventral view; D. Abdominal segment 9 and speculum gastrale, male; E. Ovipositor; F. Sternite V, male; G. Sternite V, female.
FIGURE 2 in Zaitzevia tangliangi sp. nov. a new riffle beetle from China (Coleoptera:Elmidae Macronychini)
FIGURE 2. Diagnostic features of Zaitzevia tangliangi sp. nov. A. Head, dorsal view; B. Pronotum, dorsal view; C. Antenna; D. Prosternal process; E. Metaventrite; F. Elytra
FIGURE 1. Phylogenetic tree generated from a in Koorchaloma oryzae sp. nov. (Stachybotryaceae, Sordariomycetes), from Oryza sativa (Poaceae) in northern Thailand
FIGURE 1. Phylogenetic tree generated from a maximum likelihood analysis based on a concatenated alignment of ITS, LSU and RPB2 sequences data representing Koorchaloma and other genera in Stachybotriaceae. The tree is rooted with Calonectria ilicicola (CBS 190.50), Fusarium sambucinum (CBS 146.95) and Nectria cinnabarina (CBS 125165). Bootstrap support values equal to or higher than 65% ML (left) or posterior probability values equal to or higher than 0.95 Bayesian PP (right) are indicated on the nodes. The new species is in red.
FIGURE 3 in Koorchaloma oryzae sp. nov. (Stachybotryaceae, Sordariomycetes), from Oryza sativa (Poaceae) in northern Thailand
FIGURE 3. Koorchaloma oryzae (MFLU 21–0047, holotype). a–c. Appearance of conidiomata on host substrate. d, e. Conidioma and setae. f–j. Conidiophores, conidiogenous cells and developing conidia. k. Colony cultures on PDA. l–p. Conidia. q. Germinated conidium. Scale bars: a = 1000 µm, b–d = 200 µm, e = 100 µm, f–j, l–q = 10 µm.
FIGURE 2 in Koorchaloma oryzae sp. nov. (Stachybotryaceae, Sordariomycetes), from Oryza sativa (Poaceae) in northern Thailand
FIGURE 2. Split graph showing the results of PHI test of Koorchaloma using LogDet transformation and splits decomposition. PHI test results Φw ≤ 0.05 indicate that there is no significant recombination. The new taxon is in red.
FIGURE 36 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURE 36. Distribution map of four Ophiogomphus spp. in Vietnam. O. longihamulus (red circle); O. minimus (purple circle); O. phantoani sp. nov. (yellow circle); O. sinicus (green circle). Map background source © GoogleTM Earth Service version 7.3.3.7786.
FIGURES 16–19 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURES 16–19. Posterior head and vulva lamina of Ophiogomphus spp., ♀. (16, 18), O. minimus & (17, 19), O. phantoani sp. nov.
FIGURES 4–5 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURES 4–5. Habitus of Ophiogomphus phantoani sp. nov. (4), holotype ♂; (5), paratype ♀. Scale bar is 1 cm.
FIGURES 14–15 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURES 14–15. Genital structures of Ophiogomphus phantoani sp. nov. holotype ♂; (14), vesica spermalis, lateral view; (15), apical segment of vesica spermalis, dorsal view.
Fig. 6 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 6. Bayesian inference (BI) phylogenetic tree based on nifH gene sequences. Bootstrap values of Bayesian posterior probabilities greater than 0.50 are showed on the BI tree. The novel filamentous species of this study is indicated in bold. Bar, 0.05.
Fig. 4 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 4. Bayesian inference (BI) phylogenetic tree based on 16S rRNA gene sequences. Bootstrap values of Bayesian posterior probabilities greater than 0.50 are showed on the BI tree. The novel filamentous strains of this study is indicated in bold. Bar, 0.03.
Fig. 2 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 2. Ultrastructure of Microseira minor strains. (Cw, cell wall, Th, thylakoids, Nu, nucleoplasm, Sh, sheath). Scale bars: A–D, 2 μm.
Fig. 1 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 1. Light microscopy of Microseira minor strains. A–C. Immature filaments with colourless sheaths (Arrow indicates sheath). D–G. Trichome fragmentation and formation of necridia (Arrows indicate fragmentation of trichomes and formation of necridias). H–I. Old filaments with lamellated sheaths (Arrows indicate lamellated sheaths). Scale bars: 20 μm.
FIGURES 28–35 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURES 28–35. Female occiput [28, 30, 32, 34] & abdominal end [29, 31, 33, 35] in ventral view of Ophiogomphus spp. (28, 29), O. longihamulus (rearranged from Karube 2014: Fig. 16 j, k); (30, 31), O. minimus, Nam Nung Nature Reserve; (32, 33), O. phantoani sp. nov.; (34, 35), O. sinicus (rearranged from Chao 1990: Fig. 10 & Zhang 2019: p. 424).
Fig. 3 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 3. Phylogenetic tree of 16S rRNA gene sequences (1208bp) with maximum-likelihood (ML) analysis. Bootstrap values greater than 50% are showed on the ML tree. The novel filamentous strains of this study is indicated in bold. Bar, 0.03.
Fig. 5 in A novel filamentous cyanobacterium Microseira minor sp. nov. (Oscillatoriaceae, Cyanobacteria) from the Ganfu Channel, Jiangxi, China
Fig. 5. Phylogenetic tree based on nifH gene sequences (298bp) with maximum-likelihood (ML) analysis. Bootstrap values greater than 50% are showed on the ML tree. The novel filamentous species of this study is indicated in bold. Bar, 0.07.
FIGURES 10–13 in The genus Ophiogomphus Lieftinck, 1964 in Vietnam, with descriptions of the female of O. minimus Karube, 2014 and O. phantoani sp. nov. (Odonata: Gomphidae)
FIGURES 10–13. Appendages Ophiogomphus spp. in lateral and dorsal view. (10, 11), O. phantoani sp. nov., holotype ♂; (12, 13), O. sinicus, Cao Bang Province.
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.