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2,620 results for “Molecular Phylogeny”
Fig. 2 in Molecular taxonomy, phylogeny and biogeography of the Niphargus tatrensis species complex (Amphipoda, Niphargidae) in Austria
Fig. 2 Maximum-likelihood molecular phylogeny (IQ-TREE) of the Niphargus tatrensis complex, built using 28S rRNA and COI concatenat- ed sequences. The node support values shown are Bayesian posterior
Fig. 8 Niphargus moogi n in Molecular taxonomy, phylogeny and biogeography of the Niphargus tatrensis species complex (Amphipoda, Niphargidae) in Austria
Fig. 8 Niphargus moogi n. sp. holotype male. a Outer lobe of labium; b labrum; c maxilla II; d maxilla I; e–g maxilliped: palp (e), outer lobe (f) and inner lobe (g). Scale bars, 0.1 mm
FIGURE 1 in Molecular phylogeny and morphology reveal a new wood-inhabiting fungal species, Hyphoderma guangdongense (Polyporales, Basidiomycota), from China
FIGURE 1. Maximum parsimony strict consensus tree illustrating the phylogeny of a new species and related species in Hyphoderma based on ITS+nLSU sequences. The branch is labeled with the maximum likelihood lead value equal to or greater than 70%, the reduced lead value equal to or greater than 50%, and the Bayesian posterior probability value equal to or greater than 95%. The new species is in bold.
FIGURE 2 in Molecular phylogeny and morphology reveal a new wood-inhabiting fungal species, Hyphoderma guangdongense (Polyporales, Basidiomycota), from China
FIGURE 2. Hyphoderma guangdongense (holotype, CLZhao 12657): basidiomata on the substrate (A), macroscopic characteristics of hymenophore (B). Bars: (A) = 2 cm and (B) = 2 mm.
FIGURE 4 in Molecular phylogeny and morphology reveal two new wood-inhabiting fungal species (Basidiomycota) from China
FIGURE 4. Hyphodermella sinensis (holotype, CLZhao 25866): basidiomata on the substrate (A), macroscopic characteristics of hymenophore (B). Bars: (A) = 1 cm and (B) = 1 mm.
FIGURE 2 in Molecular phylogeny and morphology reveal two new wood-inhabiting fungal species (Basidiomycota) from China
FIGURE 2. Candelabrochaete yunnanensis (holotype, CLZhao 26027): basidiomata on the substrate (A), macroscopic characteristics of hymenophore (B). Bars: (A) = 1 cm and (B) = 1 mm.
FIGURE 1 in Molecular phylogeny and morphology reveal two new wood-inhabiting fungal species (Basidiomycota) from China
FIGURE 1. Maximum parsimony strict consensus tree illustrating the phylogeny of two new species and related species in Phanerochaetaceae and Irpicaceae within Polyporales based on ITS+nLSU se-quences. The branch is labeled with a maximum likelihood lead value greater than 70%, a reduced lead value greater than 50% and a Bayesian posterior probability greater than 0.95. The new species are in bold.
FIGURE 5 in Molecular phylogeny and morphology reveal two new wood-inhabiting fungal species (Basidiomycota) from China
FIGURE 5. Microscopic structures of Hyphodermella sinensis (holotype, CLZhao 25866): basidiospores (A), basidia and basidioles (B), cystidia (C), a section of the hymenium (D). Bars: (A–D) = 10 µm.
FIGURE 2 in A molecular phylogeny of Garuleum (Calenduleae, Asteraceae) in southern Africa
FIGURE 2. Map of the geographical distributions of Garuleum species. The map shows the genus has a wide distribution range throughout South Africa and Namibia. Distribution outlines for Clade B and subclades I, II and II are indicated relative to rainfall.
FIGURE 1 in A molecular phylogeny of Garuleum (Calenduleae, Asteraceae) in southern Africa
FIGURE 1. Morphology of Garuleum bipinnatum. A. Stem with leaves; B. Dorsal view of the capitulum and involucre; C. Plant habit; D. Inflorescence.
FIGURE 3 in A molecular phylogeny of Garuleum (Calenduleae, Asteraceae) in southern Africa
FIGURE 3. Bayesian consensus tree with both PP- and Bootstrap-values. Taxonomically important morphological characters, indicating the synapomorphic characters for Garuleum and those present in the specific clades are indicated. Characters were obtained from Swelankomo (2013) and Van Zyl (2013).
FIGURE 2 in Coltricia aridicola sp. nov. derived from the Coltricia perennis complex (Hymenochaetaceae) confirmed by molecular phylogeny
FIGURE 2. Basidiocarps of Coltricia aridicola (Holotype, Dai 23028). Scale bar = 2.0 cm. Photo by Yu-Cheng Dai.
FIGURE 1 in Coltricia aridicola sp. nov. derived from the Coltricia perennis complex (Hymenochaetaceae) confirmed by molecular phylogeny
FIGURE 1. Strict consensus tree illustrating the phylogeny based on the ITS dataset. Branches are labeled with maximum likelihood bootstrap higher than 75 %, parsimony bootstrap proportions high than 75 % and Bayesian posterior probabilities more than 0.95.
FIGURE 3 in Coltricia aridicola sp. nov. derived from the Coltricia perennis complex (Hymenochaetaceae) confirmed by molecular phylogeny
FIGURE 3. Microscopic structure of Coltricia aridicola (Holotype, Dai 23028). a. Basidiospores; b. Basidia and basidioles; c. the antlerlike hyphal elements from pileal surface. d. Contextual hyphae; e. Tramal hyphae. Drawings by Ya-Rong Wang
Figure 12 in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 12. Head in frontal view. A, Ho. gladiate; B, Ho. obtusitubera; C, F. chirurga; D, W. procera; E, Se. decempunctata; F, Met. permodesta; G, Bi. subrectis; H, Ph. brevixipha; I, Ni. testaceus.
Figure 11. Living Gryllacrididae. A in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 11. Living Gryllacrididae. A, Se. decempunctata; B, Se. sichuanensis; C, Ph. brevixipha; D, Ph. sp.; E, Bi. subrectis; F, Bi. mellii.
Figure 8. Wings. A in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 8. Wings. A, Mag. hainanensis; B, Mag. guomashan; C, Ocellarnaca sp.; D, E. ruficeps; E, R. xiei; F, R. fanjingshanensis; G, Pr. silacea; H, G. stylommatoprocera; I, L. lieyongzhou.
Figure 15. Male T in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 15. Male T. yingjiangensis sp. nov.. A, face; B, abdominal terminal; C, subgenital plate; D, holotype in dorsal view; E, living male individual in lateral view.
Figure 10. Male abdominal terminal. A, B in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 10. Male abdominal terminal. A, B, Ph. brevixipha; C, Bi. mellii; D, E, Se. decempunctata; F, Se. laoshanica; G, Se. sichuanensis; H, Bi. subrectis; I, Bi. mellii. (Arrow in A indicates the middle of tergite that bulges sharply caudally, arrow in B indicates the bulge extending caudally from the root on each side of the posterior margin of male abdominal tergite.).
Figure 7. Male abdominal terminal. A in Molecular phylogeny of Chinese raspy crickets (Orthoptera: Gryllacrididae) reveals incongruences in current classification
Figure 7. Male abdominal terminal. A, Marthogryllacris sp.; B, Dracogryllacris spinose; C, U. pulchra rubricapitis; D, C. fumigata; E, Bo. xujuni; F, Mag. guomashan; G, O. fuscotessellata; H, E. ruficeps; I, R. fanjingshanensis; J, Prosopogryllacris sp.; K, G. stylommatoprocera (from: Wang and Liu 2022); L, L. lieyongzhou. (Arrow in A indicates spines extending inwards from the base in the middle of each valve at the posterior margin of male abdominal tergite.).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.