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1,122 results for “Yunnan Province”
FIGURE 5 in A New Species of the Genus Tropidophorus Duméril, Bibron, 1839 (Reptilia: Squamata: Scincidae) from China-Vietnam Border Region in Southeastern Yunnan Province, China
FIGURE 5. Macro- (A) and micro-habitat (B) of Tropidophorus vongx sp. nov. in Gulingqing, Maguan County, Wenshan Prefecture, China.
FIGURE 2 in A New Species of the Genus Tropidophorus Duméril, Bibron, 1839 (Reptilia: Squamata: Scincidae) from China-Vietnam Border Region in Southeastern Yunnan Province, China
FIGURE 2. Mitochondrial geneology of the genus Tropidophorus inferred from 12S and 16S genes using both Bayesian (BI) and Maximum Likelihood (ML) methods. Bayesian posterior probabilities (BPP) are mapped on the ML topology. For each node, three nodal support values are given, which are Bayesian posterior probabilities/ultrafast bootstrap/SH-aLRT. Lygosoma koratense was used as the outgroup to root the tree.
FIGURE 1 in A New Species of the Genus Tropidophorus Duméril, Bibron, 1839 (Reptilia: Squamata: Scincidae) from China-Vietnam Border Region in Southeastern Yunnan Province, China
FIGURE 1. Type localities of Tropidophorus near China-Vietnam border region. Red star: Tropidophorus vongx sp. nov.; yellow circle: T. baviensis; blue circle: T. murphyi; and purple circle: T. hainanus.
FIGURE 4 in A New Species of the Genus Tropidophorus Duméril, Bibron, 1839 (Reptilia: Squamata: Scincidae) from China-Vietnam Border Region in Southeastern Yunnan Province, China
FIGURE 4. Detailed closeup views of the holotype (KIZ 54236, A–C) and paratype (KIZ 55737, D–F) of Tropidophorus vongx sp. nov. in life, showing lateral head, dorsal head, and lateral body. Photos by KW.
FIGURE 3 in A New Species of the Genus Tropidophorus Duméril, Bibron, 1839 (Reptilia: Squamata: Scincidae) from China-Vietnam Border Region in Southeastern Yunnan Province, China
FIGURE 3. Holotype (KIZ 54236) and paratype (KIZ 55737) of Tropidophorus vongx sp. nov. in life. Photos by KW.
Carbon storage response to land use/land cover changes and SSP-RCP scenarios simulation: A case study in Yunnan Province, China
Open the record for dataset details and reuse information.
FIGURE 3 in Phallus haitangensis, a new species of stinkhorn from Yunnan Province, China
FIGURE 3. Morphological characteristics of Phallus haitangensis. A. Line drawing of basidiocarp B. Line drawing of hyphae of volva C. Basidiospores D. Cells of pseudostipe E. Cells of indusium F. Hyphae of volva. Scale bars: A=20 mm, B=20 μm, C=5 μm, D=40 μm, E=40 μm, F=10 μm. Tissues of the structures D, E and F were mounted in Congo Red for microscopic observation. Drawings by Samantha C. Karunarathna and photos by Huili Li.
FIGURE 2 in Phallus haitangensis, a new species of stinkhorn from Yunnan Province, China
FIGURE 2. Plate of the Phallus haitangensis (HKAS 88193). A: Mature fruiting body of P. haitangensis, B: Hole at the apex of the receptacle; C: Indusium; D: Receptacle; E: Pseudostipe; F: Volva and rhizomorph. Photos by Huili Li.
FIGURE 1 in Phallus haitangensis, a new species of stinkhorn from Yunnan Province, China
FIGURE 1. Maximum parsimony phylogram based on ITS rDNA sequence data showing the phylogenetic position of Phallus haitangensis with selected Phallus species. Bootstrap support values for maximum parsimony (MP, left), maximum likelihood (ML, middle) higher than 50% and Bayesian posterior probabilities (PP, right) greater than 0.95 are provided above the nodes. The tree is rooted with Mutinus caninus. The bar represents the distance between species.
FIGURE 4 in Epimedium zhaotongense (Berberidaceae), a New Species from Yunnan Province, China
FIGURE 4. Morphological features on abaxial surface of leaflet.—A. Abaxial surface of leaflet of E. zhaotongense (×30).—B. Abaxial surface of leaflet of E. membranaceum (×30).—C. Abaxial surface of leaflet of E. zhaotongense (×250).—D. Abaxial surface of leaflet of E. membranaceum (×130).
FIGURE 3. Epimedium membranaceum.—A in Epimedium zhaotongense (Berberidaceae), a New Species from Yunnan Province, China
FIGURE 3. Epimedium membranaceum.—A. The habitat in the wild.—B. The whole plant.—C. Compact rhizome.—D–F. The leaf with 3 leaflets.—G. Inflorescence.—H. Flower, top view.—I. Flower, side view.—J, K. Flower, underneath view.
FIGURE 1. Epimedium zhaotongense.—A. Whole plant.—B. Abaxial leaflet surface.—C in Epimedium zhaotongense (Berberidaceae), a New Species from Yunnan Province, China
FIGURE 1. Epimedium zhaotongense.—A. Whole plant.—B. Abaxial leaflet surface.—C. Stamens and gynoecium.—D. Gynoecium.— E. Inner sepal.—F. Outer sepal.—G. Petal.—H. Flower.
FIGURE 2 in Monochaetia ilexae sp. nov. (Pestalotiopsidaceae) from Yunnan Province in China
FIGURE 2. Monochaetia ilexae (HKAS 92492, holotype) a Conidiomata on the host. b, c Sections through conidiomata. d Conidia with conidiogenous cell. e–g Conidia. h Germinating spore. j Upper view of culture. k Lower view of culture. Scale bars: b, h = 50 μm, c = 10 μm, e–g = 20 μm.
FIGURE 1 in Monochaetia ilexae sp. nov. (Pestalotiopsidaceae) from Yunnan Province in China
FIGURE 1. Phylogenetic tree resulting from maximum likelihood analysis of the combined LSU and ITS sequence alignment. Bootstrap values for maximum likelihood (ML, black) and maximum parsimony (MP, red) are shown at the nodes (ML/MP). Bayesian posterior probabilities, greater than 0.90 are indicated by thickened lines. The tree is rooted with Bartalinia robillardoides (CBS 122705). The new strain is indicated in red bold and type strains are indicated as black bold.
FIGURE 2 in Helminthosporium submersum sp. nov. (Massarinaceae) from submerged wood in north-western Yunnan Province, China
FIGURE 2 Helminthosporium submersum (MFLU 17-1429, holotype) a Colonies on decaying wood. b–d Conidiophores and conidia. e–g Conidiogenesis. h–m Conidia. n–o Culture on PDA after 21 days (o from below). Scale bars: b, d =100 μm, c = 200, e–g = 50, h–m = 30 μm.
FIGURES 19–24 in A new species of Gomphosinica (Bacillariophyta) from Lugu Lake, Yunnan Province, SW China
FIGURES 19–24. Gomphosinica lugunsis Liu, Kociolek, You & Fan sp. nov. SEM pictures, externally view. Figs 19–20: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 23–24: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end.
FIGURES 1–18 in A new species of Gomphosinica (Bacillariophyta) from Lugu Lake, Yunnan Province, SW China
FIGURES 1–18. Gomphosinica lugunsis Liu, Kociolek, You & Fan sp. nov. Figs 1–17: LM pictures. Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm.
FIGURE 1 in Helminthosporium submersum sp. nov. (Massarinaceae) from submerged wood in north-western Yunnan Province, China
FIGURE 1. Phylogram generated from maximum likelihood analysis (RAxML) based on combined ITS, LSU, SSU, RPB2 and TEF1α sequence data for the families Corynesporaceae, Massarinaceae and Periconiaceae. Bootstrap support values for maximum likelihood (ML) greater than 75% and Bayesian posterior probabilities (PP) greater than 0.95 are given above the nodes. The tree is rooted to Cyclothyriella rubronotata (TR9, TR). Newly generated sequences are indicated in red and ex-type strains are in bold.
FIGURES 25–30 in A new species of Gomphosinica (Bacillariophyta) from Lugu Lake, Yunnan Province, SW China
FIGURES 25–30. Gomphosinica lugunsis Liu, Kociolek, You & Fan sp. nov. SEM pictures, internally view. Figs 25–26: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae.
FIGURE 3. Mawenzhangia thamnobryoides. 1. Leaf apex. 2. Upper marginal cells. 3. Mid-leaf cells. 4. Basal cells. 5 in Mawenzhangia thamnobryoides (Bryophyta, Lembophyllaceae), a new moss genus and species from the Shangri-la region of Yunnan Province, China
FIGURE 3. Mawenzhangia thamnobryoides. 1. Leaf apex. 2. Upper marginal cells. 3. Mid-leaf cells. 4. Basal cells. 5. Apex of innermost perichaetial leaf. 1−2, 5 from Ma 17-9217 (KRAM, isotype); 3−4 from Ma 17-9184 (KRAM, paratype). Scale bar 100 μm.
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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.