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727 results for “molecular taxonomy”
FIGURES 33–38 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 33–38. Female genitalia of Teleiopsis albifemorella, details of signum. 33–35, T. albifemorella: 33, Austria (North Tyrol), slide GEL 1165; 34, Austria (Upper Austria), slide GEL 1168; 35, Slovenia, slide GEL 1164. 36–38, T. paulheberti sp. nov.: 36, paratype, Italy (Cuneo), slide GEL 1162; 37, paratype, France (Alpes-Maritimes), slide GEL 1161; 38, paratype, France (Hautes-Alpes), slide GEL 1171.
FIGURES 7–10 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 7–10. Adults of Teleiopsis paulheberti sp. nov., males. 7, paratype, Italy (Cuneo); 8, paratype, Italy (L´Aquila); 9, paratype, France (Alpes-Maritimes); 10, paratype France (Hautes-Alpes).
FIGURES 25–28 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 25–28. Female genitalia of Teleiopsis albifemorella, segment VIII and antrum. 25, Austria (North Tyrol), slide GEL 1165; 26, Austria (Upper Austria), slide GEL 1168; 27, Slovenia, slide GEL 1164; 28, as 25, diagnostic details of antrum.
FIGURES 19–24 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 19–24. Segment VIII of male Teleiopsis. 19–21, T. albifemorella: 19, Austria (North Tyrol), slide GEL 1166; 20, Austria (Upper Austria), slide GEL 1167; 21, Slovenia, slide GEL 1163. 22–24, T. paulheberti sp. nov.: 22, holotype, Italy (Cuneo), slide GEL 1159; 23, paratype, Italy (L´Aquila), slide GEL 1169; 24, paratype, France (Hautes-Alpes), slide GEL 1172.
FIGURES 15–18 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 15–18. Male genitalia of Teleiopsis paulheberti sp. nov. 15, holotype, Italy (Cuneo), slide GEL 1159; 16, paratype, Italy (L´Aquila), slide GEL 1169; 17, paratype, France (Hautes-Alpes), slide GEL 1172; 18, as 17, diagnostic details of uncusgnathos region.
FIGURES 1–6 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 1–6. Adults of Teleiopsis albifemorella, males. 1–2, Austria (North Tyrol); 3, Austria (Upper Austria); 4, Italy (Udine); 5, Italy (South Tyrol); 6, Italy (Verona).
FIGURES 11–14 in Taxonomy of spatially disjunct alpine Teleiopsis albifemorella s. lat. (Lepidoptera: Gelechiidae) revealed by molecular data and morphology — how many species are there?
FIGURES 11–14. Male genitalia of Teleiopsis albifemorella. 11, Austria (North Tyrol), slide GEL 1166; 12, Austria (Upper Austria), slide GEL 1167; 13, Slovenia, slide GEL 1163; 14, as 13, diagnostic details of uncus-gnathos region.
FIGURES 10–13 in Two new species of Phyllodistomum Braun, 1899 (Digenea: Gorgoderidae), from freshwater fishes (Cyprinodontiformes: Goodeidae: Goodeinae) in central Mexico: An integrative taxonomy approach using morphology, ultrastructure and molecular phylogenetics
FIGURES 10–13. Scanning electron microscopy of a specimen of Phyllodistomum wallacei n. sp. 10. Adult, ventral view, with scattered dome-like papillae on hind- and forebody. 11. Oral sucker, showing 7 pairs of papillae. 12. Ventral sucker, showing 3 pairs of papillae. 13. Dome-like papillae with small projections.
FIGURE 14 in Two new species of Phyllodistomum Braun, 1899 (Digenea: Gorgoderidae), from freshwater fishes (Cyprinodontiformes: Goodeidae: Goodeinae) in central Mexico: An integrative taxonomy approach using morphology, ultrastructure and molecular phylogenetics
FIGURE 14. Coalescent-based phylogenetic tree obtained from the species tree analysis of the combined data set (COI+28S). The scale bar represents the number of nucleotide substitutions per site. Filled circles above/below branches represent Bayesian posterior probability ≥ 0.95. GenBank accession numbers of the new species are given in the taxonomic remarks section.
FIGURES 6–9 in Two new species of Phyllodistomum Braun, 1899 (Digenea: Gorgoderidae), from freshwater fishes (Cyprinodontiformes: Goodeidae: Goodeinae) in central Mexico: An integrative taxonomy approach using morphology, ultrastructure and molecular phylogenetics
FIGURES 6–9. Scanning electron microscopy of a specimen of Phyllodistomum cribbi n. sp. 6. Adult, ventral view. 7. Oral sucker, showing 4 pairs of papillae. 8. Ventral sucker, showing 3 pairs of papillae. 9. Ventral surface of hindbody exhibiting papillae on the tegument.
FIGURES 2–5 in Two new species of Phyllodistomum Braun, 1899 (Digenea: Gorgoderidae), from freshwater fishes (Cyprinodontiformes: Goodeidae: Goodeinae) in central Mexico: An integrative taxonomy approach using morphology, ultrastructure and molecular phylogenetics
FIGURES 2–5. Line drawings of the holotype of P. cribbi n. sp. and P. wallacei n. sp., and detail of the male reproductive system of both species 2. Phyllodistomum cribbi n. sp. from Zoogoneticus quitzeoensis, ventral view. 3. Detail of the cirrus sac of P. cribbi n. sp. 4. Phyllodistomum wallacei n. sp. from Ilyodon furcidens, ventral view. 5. Detail of the cirrus sac of P. wallacei n. sp. Symbols: os = oral sucker, gp = genital pore, c = cecum, vs = ventral sucker, vg = vitelline gland, o = ovary, t = testis, e = eggs.
FIGURE 1. Hydrological systems and collection sites for Phyllodistomum cribbi n in Two new species of Phyllodistomum Braun, 1899 (Digenea: Gorgoderidae), from freshwater fishes (Cyprinodontiformes: Goodeidae: Goodeinae) in central Mexico: An integrative taxonomy approach using morphology, ultrastructure and molecular phylogenetics
FIGURE 1. Hydrological systems and collection sites for Phyllodistomum cribbi n. sp. (square) and P. wallacei n. sp. (circles) in central Mexico. Full green circles and square correspond to localities where specimens were collected for molecular phylogenetic analyses; full grey circle and square indicate specimens identified either as Dendrorchis sp. or Phyllodistomum sp. from previous studies. These records were not included in the phylogenetic analyses in this study.
Supplementary material 1 from: Dimitriou AC, Taiti S, Schmalfuss H, Sfenthourakis S (2018) A molecular phylogeny of Porcellionidae (Isopoda, Oniscidea) reveals inconsistencies with present taxonomy. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 163-176. https://doi.org/10.3897/zookeys.801.23566
Percentage sequence divergence among the main clades of Porcellionidae and Maximum Likelihood phylogenetic tree. :
FIGURES 2-3 in On the molecular taxonomy of the Dendrobaena alpina species complex, with description of a new species (Crassiclitellata, Lumbricidae)
FIGURES 2-3. Dendrobaena misirlioglui sp. nov. 2 = Setal arrangements after clitellum (a, b, c, d represent setal lines). 3 = Ventrolateral view of the fore-body (Cl = clitellum, Gt = genital tumescences, Mp = male pore, Tb = tubercle)
FIGURE 1 in On the molecular taxonomy of the Dendrobaena alpina species complex, with description of a new species (Crassiclitellata, Lumbricidae)
FIGURE 1. Bayesian inference tree showing the phylogenetic relationships of the species studied. Numbers on the branches represent ML bootstrap supports and posterior probabilities (%). Values smaller than 50% are not shown.
FIGURE 7 in Molecular phylogeny of Onobrychis sect. Onobrychis (Fabaceae-Hedysareae) with insights into its taxonomy and character evolution
FIGURE 7. Character evolution of ploidy level optimized on the Bayesian tree obtained from nr DNA ITS dataset. Two characters states diploid vs. tetraploid.
FIGURE 6 in Molecular phylogeny of Onobrychis sect. Onobrychis (Fabaceae-Hedysareae) with insights into its taxonomy and character evolution
FIGURE 6. Character evolution of chromosome number optimized on the Bayesian tree obtained from nr DNA ITS dataset.Two character states x= 7 vs. x= 8
FIGURE 5 in Molecular phylogeny of Onobrychis sect. Onobrychis (Fabaceae-Hedysareae) with insights into its taxonomy and character evolution
FIGURE 5. Character evolution of wing/standard ratio optimized on the Bayesian tree obtained from nr DNA ITS dataset. Two character states short-winged petal ≤ 0.5 vs. long-winged petal> 0.5
FIGURE 4 in Molecular phylogeny of Onobrychis sect. Onobrychis (Fabaceae-Hedysareae) with insights into its taxonomy and character evolution
FIGURE 4. Character evolution of life form optimized on the Bayesian tree obtained from nr DNA ITS dataset. Two character states perennial vs. annual
FIGURE 3 in Molecular phylogeny of Onobrychis sect. Onobrychis (Fabaceae-Hedysareae) with insights into its taxonomy and character evolution
FIGURE 3. Fifty percent majority rule consensus tree resulting from Bayesian inference of the combined nuclear and plastid dataset (nrDNA+cp). Numbers above branches are posterior probabilities (PP) and numbers below the branches are likelihood bootstrap values; values <50% are not shown.
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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)
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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.