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955 results for “Subtropical”
FIGURE 1. Polystichum deltatum Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 1. Polystichum deltatum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B, G. Portions of rachises with pinnae.— C. Lamina.—D. Portion of lamina.—E. Indusium under SEM.—F. Portions of petioles.—H. Portion of pinna.—J, L. Polar views of spores with and without perispores under SEM.—K. Outside view of the cave where the new species was discovered.
FIGURE 4. Polystichum gejiuense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 4. Polystichum gejiuense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit.—B. Portion of abaxial lamina.
FIGURE 3. Polystichum gejiuense Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 3. Polystichum gejiuense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B, C, E. Portions of lamina.—D, F. Portions of rachises with pinnae.—G, K. Polar and equatorial views of spores with and without perispores under SEM.—H. Indusium.—J. Inside view of the cave where the new species was discovered.
FIGURE 2. Polystichum deltatum Li Bing Zhang, M.Q in Eight new species of Polystichum (subg. Haplopolystichum; Dryopteridaceae) from limestone caves in Guangdong and Yunnan, China, with reference to species diversity in the karst terrains at high elevations in subtropical areas
FIGURE 2. Polystichum deltatum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit.—B. Portion of abaxial lamina.
FIGURE 4 in Amanita cingulata, a new annulate species of Amanita sect. Vaginatae from subtropical China
FIGURE 4. Microscopic features of Amanita cingulata (HKAS 75600, holotype). a. Basidiospores. b. Radial section of annulus c. Hymenium and subhymenium. d. Crushed volval remnants on the pileus (vascular hyphae are shaded). Drawings by Jian-Wei Liu. Bars = 10 μm.
FIGURE 2 in Amanita cingulata, a new annulate species of Amanita sect. Vaginatae from subtropical China
FIGURE 2. Maximum-Likelihood phylogenetic tree generated from the ITS dataset. BS support values> 50% for ML and PPs> 0.90 for BI are indicated along branches (BS/PP). Fungi names in blue bold indicate the known annulate species in Amanita sect. Vaginatae, and names in red bold indicate Amanita cingulata.
FIGURE 1 in Amanita cingulata, a new annulate species of Amanita sect. Vaginatae from subtropical China
FIGURE 1. Maximum-Likelihood phylogenetic tree inferred from the nrLSU dataset. BS support values> 50% for ML and PPs> 0.90 for BI are indicated along branches (BS/PP). Fungi names in blue bold indicate the known annulate species in Amanita sect. Vaginatae, and names in red bold indicate Amanita cingulata.
FIGURE 3 in Phylloporus pruinatus, a new lamellate bolete from subtropical China
FIGURE 3. Microscopic features of Phylloporus pruinatus (a–c from HKAS 101929 (holotype); d from HKAS 74687). Drawings by Kuan Zhao. a. Basidiospores. b. Basidia and pleurocystidium. c. Cheilocystidia. d. Pileipellis.
FIGURE 2 in Phylloporus pruinatus, a new lamellate bolete from subtropical China
FIGURE 2. Basidiomata of Phylloporus pruinatus (a–b from HKAS 101929 (holotype); image taken immediately after sectioning; c–d from HKAS 74687). Bars: a–d=1 cm. Photos by Kuan Zhao (a–b) and Niankai Zeng (c–d).
FIGURE 1 in Phylloporus pruinatus, a new lamellate bolete from subtropical China
FIGURE 1. Maximum-Likelihood phylogenetic tree generated from the combined dataset (ITS, nrLSU and tef1-α). BS support values>50% for ML and PPs>0.95 for BI are indicated along branches (BS/PP). The new species is shown in bold.
FIGURE 4 in Phylloporus pruinatus, a new lamellate bolete from subtropical China
FIGURE 4. SEM of basidiospores of Phylloporus pruinatus from dried specimen (HKAS 101929, holotype). Photos by Gang Wu.
FIGURE 5 in Two new Xeromphalina (Mycenaceae, Agaricales) species with eccentric stipes from subtropical China
FIGURE 5. Features of Xeromphalina utricularis. a. Basidiomata; b. Basidia; c. Basidiospores; d. Cheilocystidia; e. Elements of pileipellis; f. Elements of stipitipellis. Scale bars a=5 mm; c=5 μm; b, d, e, f =10 μm. All drawings from holotype. Drawings by: Lina Liu.
FIGURE 4 in Two new Xeromphalina (Mycenaceae, Agaricales) species with eccentric stipes from subtropical China
FIGURE 4. Basidiomata of Xeromphalina utricularis. Scale bar=5 mm; a, b, c. HMJAU47883; d, e. HMJAU47897. Photos by: Lina Liu.
FIGURE 3 in Two new Xeromphalina (Mycenaceae, Agaricales) species with eccentric stipes from subtropical China
FIGURE 3. Features of Xeromphalina brevipes. a. Basidiomata; b. Basidia; c. Basidiospores; d. Cheilocystidia; e. Elements of pileipellis; f. Elements of stipitipellis. Scale bars a=5 mm; c=5 μm; b, d, e, f =10 μm. All drawings from holotype. Drawings by: Lina Liu.
FIGURE 1 in Two new Xeromphalina (Mycenaceae, Agaricales) species with eccentric stipes from subtropical China
FIGURE 1. RAxML tree inferred from partial ITS sequences showing phylogenetic relationships of Xeromphalina brevipes and Xeromphalina utricularis. Maximum Likelihood support values (≥75) and Bayesian Inference (≥0.90) are shown on each branch (ML/BI). New species are marked by ●.
FIGURE 2 in Two new Xeromphalina (Mycenaceae, Agaricales) species with eccentric stipes from subtropical China
FIGURE 2. Basidiomata of Xeromphalina brevipes. Scale bar=5 mm; a. HMJAU47746; b. HMJAU47744. Photos by: Lina Liu
FIGURE 4 in Potamosiphon australiensis gen. nov., sp nov. (Oscillatoriales), a new filamentous cyanobacterium from subtropical north-eastern Australia
FIGURE 4. Phylogenetic tree based on the nifH gene sequence (312 bp) showing the phylogenetic position of Potamosiphon australiensis (shown in bold; scale bar = 0.05 nucleotide substitutions per site). Numbers indicate bootstrap values (>50%) from 1,000 replicates of neighbour-joining (NJ) and maximum likelihood (ML) analyses respectively. GenBank accession numbers are shown in parentheses.
FIGURE 1 in Potamosiphon australiensis gen. nov., sp nov. (Oscillatoriales), a new filamentous cyanobacterium from subtropical north-eastern Australia
FIGURE 1. Morphology of Potamosiphon australiensis (A–F) mature filaments with lamellated sheaths, (C–D) diagonal trichome fragmentation, (B, E, G) trichome fragmentation following formation of necridia; scale bar = 30 μm.
FIGURE 3 in Potamosiphon australiensis gen. nov., sp nov. (Oscillatoriales), a new filamentous cyanobacterium from subtropical north-eastern Australia
FIGURE 3. Phylogenetic tree based on the 16S rRNA gene sequence (1406–1412 bp) showing the phylogenetic position of Potamosiphon australiensis along with sequences from other taxa within the Oscillatoriales (scale bar = 0.02 nucleotide substitutions per site). Numbers indicate bootstrap values (>50%) from 1,000 replicates of neighbour-joining (NJ) and maximum likelihood (ML) analyses respectively. GenBank accession numbers are shown in parentheses.
FIGURE 5 in Potamosiphon australiensis gen. nov., sp nov. (Oscillatoriales), a new filamentous cyanobacterium from subtropical north-eastern Australia
FIGURE 5. Phylogenetic tree based on the 16S–23S rRNA operon (1971–2089 bp) showing the phylogenetic position of Potamosiphon australienses (shown in bold; scale bar = 0.02 nucleotide substitutions per site). Numbers indicate bootstrap values (>50%) from 1,000 replicates of neighbour-joining (NJ) and maximum likelihood (ML) analyses respectively. GenBank accession numbers are shown in parentheses.
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.