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13,397 results for “sp. nov.”

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FIGURE 2 in A new congrid eel, Rhynchoconger randalli sp. nov. (Congridae: Anguilliformes) with a pentagonal pattern of vomer dentition from the Bay of Bengal, Indian waters

FIGURE 2. Arrangement of sensory pores and anterior lateral-line pores of Rhynchoconger randalli sp. nov., from holotype.

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FIGURE 4 in Fuscoporia hainanensis sp. nov. (Hymenochaetales, Basidiomycota), a new member of the F. contigua group

FIGURE 4. Basidiocarps of Fuscoporia hainanensis (holotype, Dai 16105). – Bar = 10 mm. Photo by: Qian Chen.

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FIGURE 2 in Fuscoporia hainanensis sp. nov. (Hymenochaetales, Basidiomycota), a new member of the F. contigua group

FIGURE 2. Phylogeny of Fuscoporia and related species generated inferred from ITS+nLSU+TEF1 dataset. Statistical values (MP/ML) are indicated for each node. Names of new species are in bolds.

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FIGURE 3 in Fuscoporia hainanensis sp. nov. (Hymenochaetales, Basidiomycota), a new member of the F. contigua group

FIGURE 3. Microscopic structures of Fuscoporia hainanensis (holotype, Dai 16105). a. Basidiospores. b. Basidia and basidioles. c. Cystidioles. d. Hymenial setae. e. Mycelial setae. f. Generative hyphae at dissepiment edge. g. Hyphae from tube trama. h. Hyphae from subiculum.Drawing by: Qian Chen.

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FIGURE 1 in Acrocalymma guizhouense sp. nov. (Acrocalymmaceae, Dothideomycetes) from soil in China

FIGURE 1. The maximum likelihood tree based on a combined dataset of partial SSU, LSU and ITS sequence analyses in Acrocalymma and its allied outgroups genera. Maximum likelihood support bootstrap values ≥70%, or Bayesian posterior probabilities ≥0.90 are shown as ML/BI above the nodes. The new isolates are in blue.

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FIGURE 1 in Fuscoporia hainanensis sp. nov. (Hymenochaetales, Basidiomycota), a new member of the F. contigua group

FIGURE 1. Phylogeny of Fuscoporia and related species generated inferred from nLSU sequences. Statistical values (MP/ML) are indicated for each node. Names of new species are in bold.

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FIGURE 2 in Acrocalymma guizhouense sp. nov. (Acrocalymmaceae, Dothideomycetes) from soil in China

FIGURE 2. Acrocalymma guizhouense (CGMCC 3.20853). (a, b, c, d, e, f) Upper and reverse views of culture on PDA, OA, and MEA for 14 days after inoculation, respectively; (g, h, i) Chlamydospore; (j) Upper views of culture on PDA 30 days after inoculation; (k) Appearance of pycnidia on PDA; (l, m) Pycnidia; (n, o, p, q) Peridium and conidiogenous cells. (r, s, t, u) Conidia. Scale bars: k–l = 500 μm; m = 100 μm; g–i, n–o =20 μm; p–u = 10 μm.

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FIGURE 2 in Coniella castanea sp. nov. on Castanea mollissima from Shandong Province, China

FIGURE 2. Coniella castanea (SAUCC 200313). a Leaves of host plant. b Surface view of colony after 7 days on PDA. c Reverse view of colony after 7 days on PDA. d Conidiomata sporulating on PDA. e–k Conidiogenous cells with developing Conidia. l Conidia. Scale bars: e–l= 10 μm.

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FIGURE 1 in Coniella castanea sp. nov. on Castanea mollissima from Shandong Province, China

FIGURE 1. Phylogram of Coniella based on combined ITS, LSU, RPB2 and TEF1-α genes. The ML and BI bootstrap support values above 70 % and 0.90 BYPP are shown at the first and second position above nodes. Strains from the current study are in red. Tree is rooted with [out group]. Some branches were shortened to fit them to the page – these are indicated by two diagonal lines with the number of times a branch was shortened indicated next to the lines.

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FIGURE 2 in Massaria broussonetiae sp. nov. and M. racemosae sp. nov. (Massariaceae, Pleosporales) on moraceous hosts

FIGURE 2. Massaria broussonetiae (holotype, HKAS 102402) a Substrate. b, c Ascomata on substrate. d Vertical section of an ascoma. e Ostiolar neck with green algae-like structures (in white arrows). f Peridium. g Paraphyses. h–m Ascospores (l in Congo Red, m in Indian ink). n–q Asci. Scale bars: a = 1 cm, b, c = 500 µm, d = 200 µm, n–q = 50 µm, e, f, h–m = 20 µm, g = 5 µm.

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FIGURE 1 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.

FIGURE 1. (Continued) Maximum likelihood consensus tree inferred by IQ-TREE-ML analysis of combined SSU, ITS, LSU, tef1-α and rpb2 sequences alignment. Bootstrap support values for ML> 70%, and posterior probabilities for PP> 0.90 are given at the nodes (BS/PP).

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FIGURE 1 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.

FIGURE 1. Maximum likelihood consensus tree inferred by IQ-TREE-ML analysis of combined SSU, ITS, LSU, tef1-α and rpb2 sequences alignment. Bootstrap support values for ML> 70%, and posterior probabilities for PP> 0.90 are given at the nodes (BS/PP). The tree is rooted with Teichospora trabicola (C134) and Teichospora rubriostiolata (TR7). Type species are shown in bold. Newly identified strains are in blue.

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FIGURES 20–24 in Frustulia hengduanensis sp. nov. a new diatom (Bacillariophyceae) from Hengduan Mountains, China

FIGURES 20–24. SEM micrographs, internal views of Frustulia hengduanensis sp. nov. from type material. 20. Complete internal valve. 21. Dumbbell-shaped hyaline central area. 22. Proximal raphe ends and areolae with rectangular hymens. 23. Valve apices. 24. Terminal raphe ends; the longitudinal ribs and the helictoglossae fuse to form a small porte-crayon.

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FIGURE 3 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.

FIGURE 3. Paucispora xishanensis (HKAS 115905, holotype). a–c Appearance of ascoma on host surface. d Vertical section of ascoma. e Ostiolar canal. f Peridium. g Pseudoparaphyses. h–n Asci. o–s Ascospores. Scale bars: b, c = 400 µm, d, e = 100 µm, f–n = 20 µm, o–s = 10 µm.

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FIGURES 1–14 in Frustulia hengduanensis sp. nov. a new diatom (Bacillariophyceae) from Hengduan Mountains, China

FIGURES 1–14. Light micrographs of Frustulia hengduanensis sp. nov. from type material. Scale bar = 10 μm.

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FIGURE 3 in Massaria broussonetiae sp. nov. and M. racemosae sp. nov. (Massariaceae, Pleosporales) on moraceous hosts

FIGURE 3. Massaria racemosae (holotype, MFLU 19–2135) a Substrate. b, c Ascomata on substrate. d Vertical section of an ascoma. e Peridium. f Paraphyses. g–l Asci (l in Congo Red). m–t Ascospores (s in Congo Red, t in Indian ink). Scale bars: a = 1 cm, b = 1000 µm, c = 500 µm, d = 200 µm, g–l = 50 µm, e, m–s = 20 µm, f = 5 µm.

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FIGURE 1 in Massaria broussonetiae sp. nov. and M. racemosae sp. nov. (Massariaceae, Pleosporales) on moraceous hosts

FIGURE 1. Phylogram generated from maximum likelihood (IQ-tree) based on the LSU–SSU–TEF1–RPB2 matrix. MP, ML bootstrap support (≥50%) and Bayesian posterior probabilities (≥0.95PP) support are given above or below the branches, respectively. The types and ex-types taxa are in black and red bold, and the newly introduced taxa are in red. Aceraceae, Adoxaceae, Fabaceae, Moraceae, Rosaceae, Rutaceae, and Ulmaceae host families are indicated right side.

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FIGURE 2 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.

FIGURE 2. Lophiostoma khanzada-kirgizbaeva (TASM 6158, holotype). a–b Appearance of ascomata on host surface. c Vertical section of ascoma. d, f Ostiolar canal. e Peridium. g, h Pseudoparaphyses. i–l Asci. m–o Ascospores. Scale bars: a = 1 cm, b = 300 µm, c, d = 100 µm, e–g = 50 µm, h–l = 20 µm, m–o = 10 µm.

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FIGURES 15–19 in Frustulia hengduanensis sp. nov. a new diatom (Bacillariophyceae) from Hengduan Mountains, China

FIGURES 15–19. SEM micrographs, external views of Frustulia hengduanensis sp. nov. from type material. 15. Complete external valve. 16. Dumbbell-shaped hyaline central area. 17. Proximal raphe end. 18. Valve apices, with the terminal raphe ends and the valve ends circumradiated by two rows of areolae. 19. Valve ends circumradiated by one or two rows of areolae.

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FIGURE 4. Helvella lacunosa. a, b in Helvella cystidiata sp. nov. (Helvellaceae, Ascomycota) from Tibetan Plateau, China

FIGURE 4. Helvella lacunosa. a, b Mature specimens (a HKAS 87877; b HKAS 87878); c, d Receptacle surface of pileus; e, f Stipitipellis; g, h Asci and paraphyses; i–k Asci; l Ascospores. Scale bars: a, b = 1 cm; c–l = 50 μm.

opennotspecifiedAug 2022View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record