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955 results for “Subtropical”
FIGURE 4 in Two new species and two new records of myxomycetes from subtropical forests in China
FIGURE 4. Morphological characters of Fuligo luteonitens. a A aethalium on bark of rotten log. b Granules in the cortex (SEM). c Portion of pseudocapillitium attached to cortex (SEM). d Capillitium and lime node (SEM). e Spores under under LM with DIC. f Spores showing clustered warts (arrow). Scale bars: a=5 mm; b=2 μm; c=200 μm, d=5 μm, e=10 μm, f=5 μm
FIGURE 2 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 2. Basidiomata of Neohygrocybe griseonigra. a: Habitat and appearance overview. b: Pileus margin. c: Detailed pileus surface. d: Lamellae. Bars = 2 cm. Photos by: Ming Zhang.
FIGURE 3 in Two new species and two new records of myxomycetes from subtropical forests in China
FIGURE 3. Morphological characters of Didymium saturnus. a, b Sporangia on bark and filter paper under the dissection microscope. c Cuboidal calcareous crystals on the peridium (SEM). d Spores showing the equatorial ring (arrow, LM, DIC). e Capillitium (arrow) and spores (SEM). f A spore showing the fused warts (SEM). Scale bars: a, b=0.5 mm; c=20 μm, d,e=10 μm; f=5 μm
FIGURE 3 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 3. Line drawings of Neohygrocyeb griseonigra. a: Basidiomata. b: Basidiospores. c: Basidia. d: Pseudocystidia. Drawings by a) By Ya-Heng Shen, b–d) Chao-Qun Wang.
FIGURE 2 in Two new species and two new records of myxomycetes from subtropical forests in China
FIGURE 2. Morphological characters of Diderma subochraceum. a A group of mature sporangia on dead leaves. b Opened sporangia and plasmodiocarps showing the absence of columella. c An opened sporangia showing the detachment between capillitium and the base (arrow). d The outer surface of peridium (SEM). e The inner surface of peridium (arrow, SEM). f Capillitium and spores (SEM). g Branches and anastomoses of capillitium (SEM). h Capillitial threads beaded with rounded granules (arrow, LM, DIC). i Spores. j A spore showing the small warts and cluster of prominent warts (SEM). Scale bars: a,b=1 mm; c=0.2 mm; d=20 μm; e=5 μm; f =30 μm; g=5 μm; h,i=10 μm; j=2 μm
FIGURE 6 in Two new species and two new records of myxomycetes from subtropical forests in China
FIGURE 6. Phylogenetic tree obtained from Bayesian inference analysis of 18S rDNA sequences of Diderma, Didymium and Fuligo species with C. nigra as outgroup. GenBank accession numbers are followed by species names. Bayesian posterior probabilities (BIPP) and maximum likelihood bootstrap (MLBS) values shown for each branch. The hyphen indicates that PP <0.5 and BS <50. Sequences of new species are in boldface. Scale bar indicates the fraction of substitutions per site.
FIGURE 5 in Two new species and two new records of myxomycetes from subtropical forests in China
FIGURE 5. Phylogenetic tree obtained from Bayesian inference analysis of 18S rDNA sequences of 13 Arcyria species with P. corticalis as outgroup. GenBank accession numbers are followed by species names. Bayesian posterior probabilities (BIPP) and maximum likelihood bootstrap (MLBS) values shown for each branch. The hyphen indicates that PP <0.5 and BS <50. Sequences of new species are in boldface. Scale bar indicates the fraction of substitutions per site.
FIGURE 1 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 1. Phylogenetic reconstruction of the genus Neohygrocybe based on ITS sequences. Humidicutis marginata was selected as outgroup. The GenBank accession numbers of downloaded sequences and voucher number of the new species were added to the species names (in bold), and then the collection locations were listed after that. Species names in quotation marks were questionable. Maximum Likelihood bootstrap values (BS≥50%) were indicated at the bases of the branches.
FIGURE 16. Polystichum superum 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 16. Polystichum superum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit of plants.—B. Portion of abaxial lamina.
FIGURE 14. Polystichum rectum 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 14. Polystichum rectum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit.—B. Portion of abaxial lamina.—C. Portion of adaxial lamina.
FIGURE 12. Polystichum pingbianense 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 12. Polystichum pingbianense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit of plants.—B. Portion of abaxial lamina.—C. Apex of lamina.
FIGURE 11. Polystichum pingbianense 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 11. Polystichum pingbianense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Adaxial view of leaves.—C, F. Abaxial views of laminae.—E. Lower portion of leaf.—G. Portion of abaxial lamina.—H. Sporangium before dehiscence.—K. Equatorial views of spores with and partially without perispores under SEM.—J. Portion of the village where the new species was discovered.
FIGURE 10. Polystichum oblongipinnarum 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 10. Polystichum oblongipinnarum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habit of plants.—B. Adaxial lamina.—C. Abaxial lamina.
FIGURE 15. Polystichum superum 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 15. Polystichum superum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Petioles.—C–E, G, H. Portions of abaxial lamina.—D, E. Portions of rachises with pinnae.—F, L. Polar and equatorial views of spores under SEM.—J. Sporangium before dehiscence.—K. Outside view of the cave where the new species was discovered.
FIGURE 13. Polystichum rectum 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 13. Polystichum rectum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Portions of petioles.—C. Abaxial view of leaf.—D, E. Portions of rachises with pinnae.—F. Portion of abaxial lamina.—G, K. Polar and equatorial views of spores with and without perispores under SEM.—H. Sporangium before dehiscence.—J. Limestone mountain where the new species was discovered.
FIGURE 9. Polystichum oblongipinnarum 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 9. Polystichum oblongipinnarum Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Abaxial view of lamina.—C. Adaxial view of lamina.—D. Portion of lamina.—E, F. Outside and inside views of the cave where the new species was discovered.
FIGURE 8. Polystichum malipoense 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 8. Polystichum malipoense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Two leaves.—B. Portion of abaxial lamina.
FIGURE 7. Polystichum malipoense 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 7. Polystichum malipoense Li Bing Zhang, M.Q.Han & Yan Liu.—A. Habitat and plant.—B. Adaxial view of leaves.—C. Abaxial view of lamina.—D. Portion of abaxial lamina.—E. Adaxial view of pinna.—F. Portions of petioles.—G. Portion of pinna.—H, K. Polar and equatorial views of spores with and without perispores under SEM.—J. Inside view of the cave where the new species was discovered.
FIGURE 6. Polystichum hanmengqii Li 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 6. Polystichum hanmengqii Li Bing Zhang & Yan Liu.—A. Two leaves.—B. Portion of adaxial lamina.—C. Portion of abaxial lamina.
FIGURE 5. Polystichum hanmengqii Li 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 5. Polystichum hanmengqii Li Bing Zhang & Yan Liu.—A. Adaxial view of lamina.—B. Abaxial view of lamina.—C. Portion of lamina.—D. Abaxial view of pinna.—E. Portion of rachis with pinna.—F. Portion of pinna.—G. Portion of rachis with portion of pinna.—H, K. Equatorial view of spore under SEM.—J. Outside view of the cave where the new species was discovered.
ScienceDex guides
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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.