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2,620 results for “Molecular Phylogeny”
FIGURE 4 in The first molecular phylogeny of the weevil subfamily Lixinae (Coleoptera Curculionidae) casts doubts on the monophyly of its tribes
FIGURE 4. Mouthparts of Lixinae and their relatives within the CCCMS clade; ventral view. Labial palpi are enlarged, red arrows point at the proximal seta-bearing (except Sternuchopsis) labial palpomere. Note that the labial palpi of Lepyrus and Liparus are distinctly three-segmented and at least twice longer than the maximal width of the proximal palpomere. Labial palpi of Lixinae and of Sternuchopsis, in contrast, are not longer than the maximal width of the proximal palpomere, while both distal palpomeres are either much shortened, or indistinct.
FIGURE 5 in The first molecular phylogeny of the weevil subfamily Lixinae (Coleoptera Curculionidae) casts doubts on the monophyly of its tribes
FIGURE 5. Maximum likelihood tree of Curculionidae reconstructed by RAxML from the three-fragment concatenated DNA dataset. Monophyletic Lixinae are collapsed; see Fig. 6. Numbers at each image are specimen's unique sample IDs. Illustrated terminals are indicated with black arrows. Beetle habitus images are not to scale.
Supplementary material 3 from: Yahara T, Hirota SK, Fujii S, Kokami Y, Fuse K, Sato H, Tagane S, Suyama Y (2023) Molecular phylogeny and taxonomy of Hosta (Asparagaceae) on Shikoku Island, Japan, including five new species, one new subspecies, and two new status assignments. PhytoKeys 235: 137-187. https://doi.org/10.3897/phytokeys.235.99140
Changes of ∆K with K in the samples of H. polyneuronoides and H. tardiva subsp. densinervia (A) and the other species of group 1 (B)
Fig. 1. Bayesian 50 in A molecular phylogeny of Boronia (Rutaceae): placement of enigmatic taxa and a revised infrageneric classification
Fig. 1. Bayesian 50% majority-rule consensus tree from the combined analysis of two nuclear (ITS, ETS) and three plastid markers (psbA–trnH, trnL–trnF and rbcL), with thick lines showing supported clades (≥0.95 PP). Jackknife percentages from MP analysis are indicated with symbols above branches: 100% JK (closed triangle); 90–99% JK (closed circle); 75–89% JK (open triangle); 50–74% JK (open circle). New or revised sectional assignments are indicated in bold. Section Boronia clade has been collapsed and is shown in detail in Fig. 2.
FIGURE 1 in Morphology and molecular phylogeny reveal two new species in Russula sect. Ingratae from China
FIGURE 1. Phylogenetic tree based on the ITS-nrLSU-RPB2-mtSSU dataset. Support values in normal type are bootstrap support (BS, significant when ≥ 70%). Values in bold are Bayesian Posterior Probabilities (PP, significant when ≥ 0.95). Infrageneric classification of Russula followed Buyck et al. (2018). The two new species are shown in black bold.
FIGURE 5 in Morphology and molecular phylogeny reveal two new species in Russula sect. Ingratae from China
FIGURE 5. Russula multilamellula (RITF 3346, Holotype). Microscopic features of the hymenium. A Basidia. B Basidiola. C Marginal cells. D Hymenial cystidia on lamellae sides. E Hymenial cystidia on lamellae edges. Scale bars = 10 μm.
FIGURE 4 in Morphology and molecular phylogeny reveal two new species in Russula sect. Ingratae from China
FIGURE 4. Russula clavulus (RITF 3334, Holotype). Microscopic features of the pileipellis. A Pileocystidia near the pileus margin. B Pileocystidia near the pileus centre. C Hyphal terminations near the pileus margin. D Hyphal terminations near the pileus centre. Scale bars = 10 μm.
FIGURE 3 in Morphology and molecular phylogeny reveal two new species in Russula sect. Ingratae from China
FIGURE 3. Russula clavulus (RITF 3334, Holotype). Microscopic features of the hymenium. A Basidia. B Basidiola. C Marginal cells. D Hymenial cystidia on lamellae sides. E Hymenial cystidia on lamellae edges. Scale bars = 10 μm.
FIGURE 6 in Morphology and molecular phylogeny reveal two new species in Russula sect. Ingratae from China
FIGURE 6. Russula multilamellula (RITF 3346, Holotype). Microscopic features of the pileipellis. A Pileocystidia near the pileus margin. B Pileocystidia near the pileus centre. C Hyphal terminations near the pileus margin. D Hyphal terminations near the pileus centre. Scale bars = 10 μm.
FIGURE 6 in Molecular phylogeny of Aplosporella abexaminans: a novel species revealing the second report of sexual-asexual connection in Aplosporellaceae (Botryosphaeriales) from India
FIGURE 6. Phylogram generated from Maximum likelihood analysis based on combined genes of ITS and LSU of botryosphaerialean taxa. ML and MP bootstrap support values above 50% and BPP support above 0.50 are indicated above the branches. The newly sequenced collection is in red.
FIGURE 5 in Molecular phylogeny of Aplosporella abexaminans: a novel species revealing the second report of sexual-asexual connection in Aplosporellaceae (Botryosphaeriales) from India
FIGURE 5. Phylogram generated from Maximum likelihood analysis based on ITS region and LSU gene of strains belong to Aplosporellaceae. Kellermania dasylirionicola (CBS 131720) was chosen as outgroup. Bootstrap values for ML and MP above 50% and BPP support above 0.50 are indicated. Red names indicate Aplosporella abexaminans.
FIGURE 4 in Molecular phylogeny of Aplosporella abexaminans: a novel species revealing the second report of sexual-asexual connection in Aplosporellaceae (Botryosphaeriales) from India
FIGURE 4. Asexual morph of Aplosporella abexaminans on PDA (NFCCI 5010, ex-type culture). a. Colony on PDA from above. b. Colony on PDA from below. c, d. Initial stage of germinated ascospores on PDA. e, f. Development of hyphae from germinated ascospores on PDA. g. Verruculose hyphae. h. Smooth hyphae. i–m. Conidia. n, o. Chlamydospores (yellow arrows). Scale bars a, b = 20 mm, c–o = 10 µm.
FIGURE 2 in Molecular phylogeny of Aplosporella abexaminans: a novel species revealing the second report of sexual-asexual connection in Aplosporellaceae (Botryosphaeriales) from India
FIGURE 2. Sexual morph of Aplosporella abexaminans (AMH 10212, holotype). a–e Vertical sections through ascostromata. f. Released asci from ascostromata. g, h. Ascus released from an additional sac like structure (blue arrows). Scale bars a, b = 200 µm, c = 100 µm, d–h = 50 µm.
FIGURE 1 in Molecular phylogeny of Aplosporella abexaminans: a novel species revealing the second report of sexual-asexual connection in Aplosporellaceae (Botryosphaeriales) from India
FIGURE 1. Stem of Murraya koenigii. a, b. Habit of ascostromata on the bark of host stem. Scale bars a, b = 5 mm.
Figure 18 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 18. Phylogenetic tree of Pheggomisetes taxa based on COI sequences obtained using the neighbor-joining (NJ), maximum parsimony (MP) and maximum likelihood (ML) methods. Bootstrap values are indicated above/below branches in the following order: NJ (black)/MP (red)/ML (blue). Duvalius stankovitchi georgevitchi was used as the outgroup taxon. Specimen codes are listed in parentheses.
Figure 17 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 17. UPGMA tree diagram of two Pheggomisetes species and six subspecies based on squared Mahalanobis distances (scale shown) obtained from eight analysed morphological trait measurements and 12 ratio variables.
Figure 15 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 15. TPEF microscopy image of part of the toothlike copulatory piece of P. globiceps ninae comb. & stat. nov., showing fine details of the structure.
Figure 13 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 13. Pheggomisetes globiceps globiceps from the Dushnika Cave, village of Iskrets (near Sofia), Mt. Ponor Planina, Western Bulgaria. A, topotype male, aedeagus (lateral view). B, topotype male, aedeagus (dorsal view). C, topotype male, abdominal sternite IX (urite). D, topotype female, gonocoxites IX and gonosubcoxites IX. Scales = 0.1 mm.
Figure 12 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 12. Pheggomisetes globiceps globiceps from the Dushnika Cave, village of Iskrets (near Sofia), Mt. Ponor Planina, Western Bulgaria. Topotype male, habitus (dorsal view). Scale = 5.0 mm.
Figure 11 in The genus Pheggomisetes Knirsch, 1923 (Coleoptera: Carabidae: Trechinae) in Serbia: taxonomy, morphology and molecular phylogeny
Figure 11. Pheggomisetes globiceps ilandjievi from the Golyama Balabanova Dupka Cave, village of Komshtitsa (near Sofia), Stara Planina Mts., Western Bulgaria. A, topotype male, aedeagus (lateral view). B, topotype male, aedeagus (dorsal view). C, topotype male, abdominal sternite IX (urite). D, topotype female, gonocoxites IX and gonosubcoxites IX. Scales = 0.1 mm.
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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
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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.