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823 results for “southwestern China”
Figure 2 in Two new troglobitic species of the genus Telema (Araneae, Telemidae) from Guizhou, southwestern China
Figure 2. Telema feilong sp. nov., male holotype and female paratype: (A) male body, lateral view; (B) male body, dorsal view; (C) male left palp, prolateral view; (D) male left palp, retrolateral view; (E) male palpal coxae, labium and sternum in ventral view; (F) male palpal cymbium in dorsal view; (G) male left chelicerae ventral view; (H) male colulus; (I) female genitalia ventral view; (J) female genitalia dorsal view; (K) female colulus. Scale bars: A, B, 0.2 mm; C–K, 0.1 mm.
Figure 3 in Two new troglobitic species of the genus Telema (Araneae, Telemidae) from Guizhou, southwestern China
Figure 3. Telema zhewang sp. nov., male holotype, female paratype and Telema liangxi comparative material: (A) T. zhewang female body, lateral view; (B) T. zhewang female body, dorsal view; (C) T. zhewang male left palp, prolateral view; (D) T. zhewang male left palp, retrolateral view; (E) T. liangxi male palpal cymbium in dorsal view; (F) T. zhewang male palpal cymbium in dorsal view; (G) T. zhewang male colulus; (H) T. zhewang female genitalia ventral view; (I) T. zhewang female genitalia dorsal view; (J–L) T. zhewang female spermathecae in lateral view; (M, N) T. liangxi female spermathecae in lateral view; (O) T. zhewang female palpal coxae, labium and sternum in ventral view; (P) T. zhewang female left chelicerae ventral view; (Q) T. zhewang female colulus. Scale bars: A, B, 0.2 mm; C–Q, 0.1 mm.
FIGURE 1 in A new species of the fishfly genus Neochauliodes van der Weele discovered from southwestern China through an integrative approach based on morphological and molecular evidence (Megaloptera: Corydalidae: Chauliodinae)
FIGURE 1. Neochauliodes triangulatus sp. nov., habitus photo of holotype male, dorsal view. Scale bar = 10.0 mm.
FIGURE 4 in A new species of the fishfly genus Neochauliodes van der Weele discovered from southwestern China through an integrative approach based on morphological and molecular evidence (Megaloptera: Corydalidae: Chauliodinae)
FIGURE 4. Interspecific phylogeny of the Neochauliodes bowringi species-group based on a concatenated dataset. Numbers at nodes are Bayesian posterior probabilities (left) and maximum likelihood bootstrap values (right). "-" at nodes indicate inconsistency in the topologies from the two methods.
FIGURE 3. Male gonocoxite 10 in A new species of the fishfly genus Neochauliodes van der Weele discovered from southwestern China through an integrative approach based on morphological and molecular evidence (Megaloptera: Corydalidae: Chauliodinae)
FIGURE 3. Male gonocoxite 10 of Neochauliodes spp., lateral view. A. N. bowringi (McLachlan); B. N. moriutii Asahina; C. N. umbratus Kimmins; D. N. tonkinensis (van der Weele); E. N. triangulatus sp. nov.; F. N. guixianus Jiang, Wang & Liu. Scale bar = 1 mm.
FIGURE 2 in A new species of the fishfly genus Neochauliodes van der Weele discovered from southwestern China through an integrative approach based on morphological and molecular evidence (Megaloptera: Corydalidae: Chauliodinae)
FIGURE 2. Neochauliodes triangulatus sp. nov., line drawing of male genitalia. A. Genitalia, lateral view; B. Ectoproct, dorsal view; C. Gonocoxite 10, ventral view. cc: callus cercus; e: ectoproct; gx: gonocoxite; S: sternum; T: tergum. Arrow indicates subapical processes of gonocoxite 10. Scale bar = 1 mm.
FIGURE. 3 in Amanita annulata, a new species of Amanita section Vaginatae with an annulus from southwestern China
FIGURE. 3 Basidioma of Amanita annulata. a: MHKMU W.H. Zhang 232; b–d, f, g: MHKMU L.P. Tang 1671 (holotype); e: MHKMU L.P. Tang 1730; (a, photo by W.H. Zhang; b–g, photos by L.P. Tang).
FIGURE 4 in Amanita annulata, a new species of Amanita section Vaginatae with an annulus from southwestern China
FIGURE 4. Microscopic features of Amanita annulata. a. Pileipellis. b. Lamellar trama. c. Basidiospores. d. Basidia. e. Hymenium and subhymenium. f. inflated cells of the annulus. Bars: a–b = 100 μm, c–f = 20 μm. (a–f, photos by: W.H. Zhang).
FIGURE.2 in Amanita annulata, a new species of Amanita section Vaginatae with an annulus from southwestern China
FIGURE.2 Phylogenetic relationship of Amanita section Vaginatae based on the ITS dataset. RAxML bootstrap values (BP ≥ 50%) and Bayesian Posterior Probabilities (PP ≥ 0.90) are indicated along branches. The new taxon is shown in red, and other species with an annulus within section Vaginatae in blue.
FIGURE.1 in Amanita annulata, a new species of Amanita section Vaginatae with an annulus from southwestern China
FIGURE.1 Phylogenetic relationship of Amanita section Vaginatae based on the LSU dataset. RAxML bootstrap values (BP ≥ 50%) and Bayesian Posterior Probabilities (PP ≥ 0.90) are indicated along branches. The new taxon is shown in red, and other species with an annulus within section Vaginatae in blue.
FIGURE 4 in Species delimitation of Hymenasplenium obliquissimum group (Aspleniaceae) in southwestern China
FIGURE 4. Maximum likelihood phylogeny of the nuclear gene LEAFY dataset. Maximum parsimony and Bayesian analyses recovered identical topologies. For each node, the following values are provided: maximum parsimony bootstrap (%), maximum likelihood bootstrap (%), and posterior confidence (p-value). Columns on the right refer to clade abbreviations obtained from the chloroplast phylogeny (Fig. 3), inferred ploidy level (2x, 4x), reproduction mode (apomictic/sexual), and clade abbreviation (A–B). Terminals with the same OTU name represent different sequences at the duplicated gene locus of the same accession.
FIGURE 6. A in Species delimitation of Hymenasplenium obliquissimum group (Aspleniaceae) in southwestern China
FIGURE 6. A comparison of pinnae, stipes, and rachis sketches, of representative specimens of chloroplast clades I–V. Sketches of the segregated two samples that represented two lineages (IIb, IV) were missing because the specimens were not accessible.
FIGURE 3 in Species delimitation of Hymenasplenium obliquissimum group (Aspleniaceae) in southwestern China
FIGURE 3. Maximum likelihood phylogeny based on the concatenated plastid DNA sequence dataset. Maximum parsimony and Bayesian analyses recovered identical topologies with respect to the relationships among the main clades of the Hymenasplenium obliquissimum group. For each node, the following values are provided: maximum parsimony bootstrap (%), maximum likelihood bootstrap (%), and posterior confidence (p-value). Columns on the right refer to inferred ploidy level (2x, 4x), reproduction mode (apomictic/sexual), and clade abbreviation (I–V). Outgroup taxa are shown as sisters to the Hymenasplenium obliquissimum group.
FIGURE 5 in Species delimitation of Hymenasplenium obliquissimum group (Aspleniaceae) in southwestern China
FIGURE 5. The reticulate evolutionary history of the Hymenasplenium obliquissimum group as revealed by the LFY network. The network was constructed from the LFY maximum parsimony strict consensus tree. Plastid lineages are indicated by different colors: red = clade I; blue = subclade IIc; green = clade V. Columns on the right indicate inferred ploidy levels (2x, 4x), reproduction mode and clade abbreviations (I–V) obtained from the chloroplast phylogeny (Fig. 3).
FIGURE 2 in Species delimitation of Hymenasplenium obliquissimum group (Aspleniaceae) in southwestern China
FIGURE 2. Spore measurements taken from collected specimens. Spore size arranged from smallest to largest. Dot = mean value and interval = maximum and minimum values measured.
FIGURE 3 in Plectania lutea (Sarcosomataceae), a new species from southwestern karst areas of China
FIGURE 3. Ascocarps of Plectania lutea. Scale bar a, d = 20 mm; b, c=10 mm. a–d from HMJAU57091 (Holotype!). Photos by Guang-fu Mou
FIGURE 2 in Plectania lutea (Sarcosomataceae), a new species from southwestern karst areas of China
FIGURE 2. Bayesian tree inferred from partial ITS+LSU sequences showing phylogenetic relationships of Plectania lutea. Bayesian Inference (BPP≥0.90) and Maximum Likelihood support values (ML≥70) are shown (BPP/ML). New species is marked by ●.
FIGURE 1 in Plectania lutea (Sarcosomataceae), a new species from southwestern karst areas of China
FIGURE 1. Bayesian tree inferred from partial ITS sequences showing phylogenetic relationships of Plectania lutea. Bayesian Inference (BPP≥0.85) are shown. New species is marked by ●.
FIGURE 3 in Calocera tibetica sp. nov. (Dacrymycetaceae, Dacrymycetales) from southwestern China
FIGURE 3. Microscopic structures of Calocera tibetica (Holotype). A. Basidiospores without septum. B. Basidiospores with septa and germinations. C. Marginal hyphae and mature basidia. D. Probasidia and hyphidia. E. Hyphae with nodose-septa. F. A section of hymenium. Scale bars = 10 µm. Photos by: Long-Fei Fan.
FIGURE 1 in Calocera tibetica sp. nov. (Dacrymycetaceae, Dacrymycetales) from southwestern China
FIGURE 1. Phylogeny of Calocera by ML analysis based on the nITS + nLSU dataset. Branches are labeled with parsimony bootstrap proportions and maximum likelihood bootstrap> 70%, and Bayesian posterior probabilities> 0.95, respectively. New species is in bold.
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.