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2,359 results for “Southwest”
FIGURE 1 in Seifertia shangrilaensis sp. nov. (Melanommataceae), a new species from Southwest China
FIGURE 1. Phylogenetic construction using RAxML tree based analysis of a combined dataset of LSU, SSU and TEF1-α. Bootstrap support values for maximum likelihood (ML, black), equal or greater than 70% and Bayesian posterior probabilities (PP, red) equal to or greater than 0.95 are shown above the nodes. The tree is rooted to Hysterium angustatum (CBS 236.34 and CBS 123334). The type strains are in black bold and the newly generated sequences are indicated in red bold.
FIGURE. 2 in Seifertia shangrilaensis sp. nov. (Melanommataceae), a new species from Southwest China
FIGURE. 2. Seifertia shangrilaensis (MFLU 16-0267, holotype). a. Living rachides of Rhododendron decorum. b. Appearance of synnema on rachides. c. A synnema visualized under the compound microscope. d–h. Conidiogenous cells. i–p. Conidia. q–s. Germinating conidia. t. Multiple culture colonies from above. u. Multiple culture colonies. v. Single colony on PDA after 4 weeks. Scale bars: t–u = 2 cm, v = 1 cm, a = 0.5 cm, b = 500 μm, c = 200 μm, g–h, j–k, q–s = 10 μm, d–f, i, l–n = 5 μm.
FIGURE 4 in Species of Psilocybe (Hymenogastraceae) from Yunnan, southwest China
FIGURE 4. Psilocybe keralensis (IFRD415173), A: Basidia, B: Basidiospores, C: Cheilocystidia, D: Pleurocystidia, E: Caulocystidia. Scal bar=10 μm.
FIGURE 3. Psilocybe ruiliensis A–C, E–G in Species of Psilocybe (Hymenogastraceae) from Yunnan, southwest China
FIGURE 3. Psilocybe ruiliensis A–C, E–G:(holotype, IFRD415241), D: (IFRD415240), A: Pileipellis, B: Caulocystidia, C–D: Cheilocystidia, E: Pleurocystidia, F: Basidia, G: Basidiospores. Scal bar=10 μm.
FIGURE 5 in Species of Psilocybe (Hymenogastraceae) from Yunnan, southwest China
FIGURE 5. Psilocybe aff. fasciata (IFRD415224), A: Pileipellis, B: Cheilocystidia, C: Basidia, D: Basidiospores, E: Caulocystidia. Scale bar = 10 μm.
FIGURE 1 in Species of Psilocybe (Hymenogastraceae) from Yunnan, southwest China
FIGURE 1. Phylogram inferred from analyses of a combined LSU and ITS dataset using MrBayes. Values above and below branches are posterior probabilities (pp≥0.80) and RAxML bootstrap (BS≥50%) values. For node with little difference between RAxML and BI analyses, only the pp value is displayed and BS value is not shown but indicated by '/'. The terminal taxa represent individual specimens with GenBank accession numbers. nrLSU and ITS numbers are indicated as LSU/ITS and the sequences that are lacking are not shown, and only one number is represented the sequence that is including nrLSU and ITS data. Species from Yunnan province and new sequences generated in this study are in bold.
FIGURE 2 in Species of Psilocybe (Hymenogastraceae) from Yunnan, southwest China
FIGURE 2. Basidiomata of Psilocybe species. A–G: Psilocybe keralensis, A, E: IFRD415173, B: IFRD415174, C–D: IFRD414040, F–G: IFRD414213; H, L: Psilocybe aff. fasciata, IFRD415224; I–K, M–N: Psilocybe ruiliensis, I–J: IFRD415243, K, N: holotype, IFRD415241, M: IFRD415240.
FIGURE 4 in Clitopilus fusiformis (Entolomataceae; Agaricales), a new species from southwest China
FIGURE 4. Phylogenetic tree based on the RPB2 sequences. Maximum parsimony bootstrap percentage (≥50%) and Bayesian posterior probabilities (≥0.90) are indicated above the branches.
FIGURE 3 in Clitopilus fusiformis (Entolomataceae; Agaricales), a new species from southwest China
FIGURE 3. Phylogenetic tree based on the ITS sequences. Maximum parsimony bootstrap percentage (≥50%) and Bayesian posterior probabilities (≥0.90) are shown above the branches.
FIGURE 2 in Clitopilus fusiformis (Entolomataceae; Agaricales), a new species from southwest China
FIGURE 2. Microstructures of Clitopilus fusiformis (holotype). a. Basidiospores. b. Basidia. c. Pileipellis.
FIGURE 2 in Neoalbatrellus odorus sp. nov. (Albatrellaceae, Russulales) from Southwest China
FIGURE 2. Maximum likelihood tree illustrating the phylogeny of Neoalbatrellus odorus and its related species, based on 28S rDNA sequences. Branches are labeled with maximum likelihood bootstrap higher than 50% (former), parsimony bootstrap proportions higher than 50% (middle) and Bayesian posterior probabilities more than 0.95 (latter).
FIGURE 1 in Neoalbatrellus odorus sp. nov. (Albatrellaceae, Russulales) from Southwest China
FIGURE 1. Maximum likelihood tree illustrating the phylogeny of Neoalbatrellus odorus and its related species, based on ITS sequences. Branches are labeled with maximum likelihood bootstrap higher than 50% (former), parsimony bootstrap proportions higher than 50% (middle) and Bayesian posterior probabilities more than 0.95 (latter).
FIGURE 4 in Neoalbatrellus odorus sp. nov. (Albatrellaceae, Russulales) from Southwest China
FIGURE 4. Microscopic structures of Neoalbatrellus odorus (drawn from the holotype). a: Basidiospores. b: Basidia and basidioles. c: Hyphae from trama. d: Hyphae from context. e: Hyphae from stipe. Scale bars: a = 5 μm; b–e = 10 μm.
FIGURE 2. Galium cariense. A. Holotype. B in A new species of Galium (Rubiaceae) from Southwest Anatolia, Turkey
FIGURE 2. Galium cariense. A. Holotype. B. Isotype (R. Daşkın 1085, BULU). Scale bar 5 cm. C. Habit on serpentine scree, 2 km after Tuzla Beli Pass, Denizli, 1253 m. Photos by R. Daşkın.
FIGURE 1. Galium cariense. A. Habit. B. Cauline leaf. C. Corolla, top view. D in A new species of Galium (Rubiaceae) from Southwest Anatolia, Turkey
FIGURE 1. Galium cariense. A. Habit. B. Cauline leaf. C. Corolla, top view. D. Ovary and corolla, lateral view. E. Seed, ventral view. F. Seed, lateral view. A–D from holotype R. Daşkın 1085 (BULU); E–F from paratype R. Daşkın 980 (BULU). Drawn by G. Bağçıvan.
FIGURE 4 in A new species of Galium (Rubiaceae) from Southwest Anatolia, Turkey
FIGURE 4. Distribution map of Galium cariense (Δ), G. bracteatum (Ɨ), G. peplidifolium () and G. penduliflorum (z) in Turkey.
FIGURE 3 in A new species of Galium (Rubiaceae) from Southwest Anatolia, Turkey
FIGURE 3. SEM micrographs of mericarps of species of Galium. A−B. G. peplidifolium. C−D. G. cariense. E−F. G. bracteatum. A, C, E General aspect; B, D, F Surface ornamentation. Scale bars: A, C, D 200 μm; B, D 20 μm; F 100 μm.
FIGURE 11 in Unexpected discovery of a new Lycocerus (Coleoptera, Cantharidae) from Okinawa Island, Ryukyu Islands, southwest Japan
FIGURE 11. Distribution map of three black-colored Lycocerus species in the Ryukyu Islands, created based on the distributional information presented in this paper.
FIGURE 10 in Unexpected discovery of a new Lycocerus (Coleoptera, Cantharidae) from Okinawa Island, Ryukyu Islands, southwest Japan
FIGURE 10. Collecting site of Lycocerus todai sp. nov. (Nakijin-son, Jana, Oppadake), taken by the author when a paratype was collected.
FIGURES 7–9. Aedeagus, male tergite IX and male sternite IX in Unexpected discovery of a new Lycocerus (Coleoptera, Cantharidae) from Okinawa Island, Ryukyu Islands, southwest Japan
FIGURES 7–9. Aedeagus, male tergite IX and male sternite IX of Lycocerus spp. 7, L. todai sp. nov., paratype; 8, L. okinawanus; 9, L. yonaensis. A: aedeagus, ventral; B: ditto, lateral; C: ditto, dorsal; D: tergite IX and sternite IX, ventral. Scale bars: 0.5 mm.
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.