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823 results for “southwestern China”
FIGURE 13 in Six new species of the genus Opopaea Simon, 1891 from Xishuangbanna Rainforest, southwestern China (Araneae: Oonopidae)
FIGURE 13. Opopaea zhengi sp. nov., male. A–C. Habitus, dorsal, lateral and ventral views; D–G. Prosoma, dorsal, lateral, ventral and anterior views; H, I. Abdomen, ventral and anterior views. Abbreviations: boc = booklung covers; dte = dorsolateral, triangular extensions; sr = scutal ridge. Scales: 0.2 mm.
FIGURE 14 in Six new species of the genus Opopaea Simon, 1891 from Xishuangbanna Rainforest, southwestern China (Araneae: Oonopidae)
FIGURE 14. Opopaea zhengi sp. nov., female. A–C. Habitus, dorsal, lateral and ventral views; D–G. Prosoma, dorsal, lateral, ventral and anterior views; H, I. Abdomen, anterior and ventral views. Abbreviations: boc = booklung covers. Scales: 0.2 mm.
FIGURE 1 in Six new species of the genus Opopaea Simon, 1891 from Xishuangbanna Rainforest, southwestern China (Araneae: Oonopidae)
FIGURE 1. Opopaea auriforma sp. nov., male. A–D. Prosoma, dorsal, lateral, ventral and anterior views; E–G. Abdomen, ventral, lateral and anterior views; H, I. Left palp, prolateral and retrolateral views. Scales: A–G = 0.2 mm; H, I = 0.1 mm.
FIGURE 3 in SEM morphological study of the Late Triassic clam shrimp Shipingia hebaozhaiensis (Spinicaudata, Crustacea) from Yunnan, southwestern China
FIGURE 3. Shipingia hebaozhaiensis Shen in Zhang et al., 1976. A is a light micrograph, the others are SEM images. A, external mould of a right valve, NIGP 29860. B, small to large sized reticulate platform on a growth band in the antero-dorsal part of the carapace. C, D, medium to large sized reticulate platform on growth bands in the dorsal part of the carapace. E, small and large sized reticulate platform on growth bands in the anterior middle part of the carapace. F, small and large sized platform on growth bands in the posterior dorsal part of the carapace. G, small sized nodules on growth bands in the antero-ventral part of the carapace. H, small sized nodules on growth bands in the postero-ventral part of the carapace. Scale bars = 1 mm in A; 20 µm in B; 40 µm in C, G; 60 µm in E, F; 100 µm in D, H.
FIGURE 2 in SEM morphological study of the Late Triassic clam shrimp Shipingia hebaozhaiensis (Spinicaudata, Crustacea) from Yunnan, southwestern China
FIGURE 2. Shipingia hebaozhaiensis Shen in Zhang et al., 1976. A is a light micrograph, the others are SEM images. A, External mould of a left valve, holotype, NIGP 29859. B, Large sized reticulate platform on a growth band near the umbo. C, A reverse image of B, showing the large sized reticulations on a growth band near the umbo. D, External mould on growth bands in the posterior dorsal part of the carapace, showing the transition from small to moderate nodules. E, A reverse image showing the fine reticulations on growth bands in the antero-ventral part of the carapace. F, A reversal image of D, showing the transition from fine to large-sized reticulations on growth bands in the posterior dorsal part of the carapace. G, A reverse image showing the fine reticulations on a growth band in the ventral part of the carapace. H, A reverse image, showing the transition from large-sized reticulation to fine reticulations on growth bands in the middle part of the carapace. Scale bars = 1 mm in A; 20 µm in B, C, G; 40 µm in H; 50 µm in E; 100 µm in D, F.
FIGURE 3 in Allium jichouense (Amaryllidaceae), a new species of the section Sikkimensia from southwestern China
FIGURE 3. Phylogenetic relationship inferred from Bayesian analysis of Allium sect. Sikkimensia based on nrDNA sequences. Bayesian posterior probabilities (PP) and bootstrap values (BS) values are shown at nodes. The scientific name is given using three letter codes when it is repeated and different color underlining the incongruence between nrDNA tree and cpDNA tree. Groups I, II represent two identified groups within A. sect. Sikkimensia in this study.
FIGURE 2 in Allium jichouense (Amaryllidaceae), a new species of the section Sikkimensia from southwestern China
FIGURE 2. Illustration of Allium jichouense. A, habit. B, three tepals and stamens. C, pistil (showing ovary and nectary).
FIGURE 1 in Allium jichouense (Amaryllidaceae), a new species of the section Sikkimensia from southwestern China
FIGURE 1. Habitat and habit of Allium jichouense. A, natural habitat on alpine screes. B–C, habit. D, inflorescence. E, dissection of a flower. F–G, bulbs, showing fibrous bulb outer tunics and extended rhizomes indicated by the red arrows. (B & F, from Gonggashan of Sichuan Prov.; others from the type locality)
FIGURE 3. Lyophyllum pallidofumosum. A–B in Lyophyllum pallidofumosum sp. nov. (Lyophyllaceae, Agaricales), from southwestern China
FIGURE 3. Lyophyllum pallidofumosum. A–B. Whole basidiomata (HKAS 124190, Holotype). Scale bars: A = 100 mm, B = 20 mm. C. Whole basidiomata (HKAS 124189, Paratype). Scale bars = 50 mm. D–F. Hymenium, Scale bars: D = 100 μm, E–F = 20 μm. G. Basidiospores. H. Basidia and basidioles. Scale bars: G–H = 20 μm.
FIGURE 1 in Lyophyllum pallidofumosum sp. nov. (Lyophyllaceae, Agaricales), from southwestern China
FIGURE 1. Morphological properties of Lyophyllum cultures on YPD medium after 24 d in the dark in a 90 mm diam petri dish. A. L. pallidofumosum; B. L. decastes; C. L. fumosum; D. L. shimeji. Scale bars: A–D = 18 mm.
Supplementary material 4 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
Phylogenetic analyses of the ranked top 50 families identified from Ophiocordyceps nujiangensis based on maximum likelihood (ML). Values at the nodes are ML bootstrap proportions
FIGURE 1 in Collybiopsis bambusicola sp. nov. in Yunnan Province, Southwestern China
FIGURE 1. Phylogeny of Collybiopsis by ML analyses based on combined ITS + nLSU sequences. Branches are labeled with maximum likelihood bootstrap ≥50 % and Bayesian posterior probabilities ≥0.90, respectively. New species are indicated in bold.
Supplementary material 3 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
Rarefaction curves (Shannon-Wiener curve) of the fungal communities collected from the fruiting body from four different specimens of Ophiocordyceps nujiangensis
Supplementary material 2 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
The information of species and their mitochondrial genomes for constructing the mitochondrial-genome phylogenetic tree of Hypocreales
FIGURE 1 in Two new species of Amphinemura (Plecoptera: Nemouridae) from Yunnan Province, southwestern China
FIGURE 1. Male and female adult of Amphinemura kondratieffi sp. nov. — a. male terminalia, dorsal view; b. same, ventral view; c. same, lateral view; d. male epiproct, cleared, dorsal view; e. right male paraproct, ventrocaudal view; f. female terminalia, ventral view — Abbreviations: T9, T10: Tergum 9, 10; ce: cercus; S9, S10: Sternum 9, 10; hp: hypoproct; v: vesicle; il: inner lobe of paraproct; ml: median lobe of paraproct; ol: outer lobe of paraproct; ds: dorsal sclerite of epiproct; vs: ventral sclerite of epiproct; la: lateral arm of epiproct.
FIGURE 2 in Two new species of Amphinemura (Plecoptera: Nemouridae) from Yunnan Province, southwestern China
FIGURE 2. Male and female adult of Amphinemura setosa sp. nov. — a. male terminalia, dorsal view; b. same, ventral view; c. same, lateral view; d. male epiproct, dorsal view; e. same, lateral view; f. female terminalia, ventral view — Abbreviations: T9, T10: Tergum 9, 10; ce: cercus; ep: epiproct; S9, S10: Sternum 9, 10; hp: hypoproct; v: vesicle; il: inner lobe of paraproct; ml: median lobe of paraproct; ol: outer lobe of paraproct; ds: dorsal sclerite of epiproct; vs: ventral sclerite of epiproct (median process); la: lateral arm of epiproct (lateral process).
FIGURES 14–16 in Navicula sinicomeniscus sp. nov. (Bacillariophyta; Naviculaceae), a new species from southwestern China
FIGURES 14–16. Navicula sinicomeniscus sp. nov. SEM, internal views. 14. Internal view of entire valve with an obviously raised raphe sternum. 15. Internal view of valve apex with prominent helictoglossa. 16. Valve center showing not interrupted raphe, shortened striae. The black arrows in Figs 14 and 16 point to broad and raised, not interrupted sternum.
FIGURES 11–13 in Navicula sinicomeniscus sp. nov. (Bacillariophyta; Naviculaceae), a new species from southwestern China
FIGURES 11–13. Navicula sinicomeniscus sp. nov. SEM, external views. 11. External view of an entire valve. The arrow A points to developed, narrow, raised sternum. 12. Valve apex, with striae with long slit-like areolae and undulate distal raphe fissure bent onto the mantle before the apex. The arrow B points to a row of visible, horizontal areolae positioned on the valve mantle at the apices. 13. External view of valve center, showing the drop-like shaped proximal raphe endings and interrupted sternum. The arrows C and D point to shortened and interrupted striae, respectively.
FIGURES 1–10 in Navicula sinicomeniscus sp. nov. (Bacillariophyta; Naviculaceae), a new species from southwestern China
FIGURES 1–10. Navicula sinicomeniscus sp. nov. LM. Valve views, showing size range and variability of the holotype population.
FIGURE 3 in Papiliomyces puniceum and Metarhizium lymantriidae: two new species from the Gaoligong Mountains in southwestern China
FIGURE 3. Phylogenetic tree of Metarhizium and its related genera based on ML analysis of six-locus (5.8S-ITS, nrSSU, nrLSU, EF-1α, RPB1 and RPB2) dataset. * Denotes an ex-type isolate
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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.
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.