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513 results for “molecular characters”
Fig. 2 in Description of a new species of Hobbsinella (Crustacea, Bathynellacea, Bathynellidae) from Colorado (USA) based on morphological and molecular characters
Fig. 2. Hobbsinella gunnisonensis Camacho & Taylor sp. nov., holotype, ♀ (MNCN/ARTP20.04/20172). A. AI. B. AII. C. Labrum. D. Paragnath. E. Masticatory part of Md. F. Md. G. MxI. H. MxII. Scale bar in mm.
Fig. 1 in A new species of freshwater Chaetonotidae (Gastrotricha, Chaetonotida) from Obodska Cave (Montenegro) based on morphological and molecular characters
Fig. 1. Map of Montenegro with the location of Obodska Cave.
Fig. 2 in A new species of freshwater Chaetonotidae (Gastrotricha, Chaetonotida) from Obodska Cave (Montenegro) based on morphological and molecular characters
Fig. 2. Scheme of Obodska Cave. 1, 2, 3, 4 = sampling localities.
An evaluation of the usefulness of morphological characters to infer higher-level relationships in birds by mapping them to a molecular phylogeny
Open the record for dataset details and reuse information.
FIGURE 1 in Morphological and molecular characters reveal the status of Pedesta rubella (Devyatkin, 1996) stat. n. and P. similissima (Devyatkin, 2002) syn. n. (Lepidoptera, Hesperiidae)
FIGURE 1. NJ tree based on Kimura-2-Parameter distances for partial mitochondrial COI sequences from 28 individuals of Pedesta, values at nodes represent the bootstrap support (BP) values.
FIGURE 4 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 4. Hierarchical clustering of the biogeographical distribution of Helicotylenchus pseudorobustus.
FIGURE 3 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 3. Helicotylenchus pseudorobustus (Steiner, 1914) Golden, 1956 [population from Astaneh (Guilan Province, Iran)]. A: Neck. B: Female reproductive system. C–E: Anterior end (stoma and DGO). F–H: Habitus of the females. I–N: Female posterior end.
FIGURE 5 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 5. Hierarchical clustering of different populations of Helicotylenchus pseudorobustus and its junior synonym Helicotylenchus microlobus.
FIGURE 2 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 2. Helicotylenchus pseudorobustus (Steiner, 1914) Golden, 1956 [population from Roodsar (Guilan Province, Iran)]. A: Neck. B: Female reproductive system. C: Anterior end (stoma and DGO). D–E: Female posterior end. F–G: Habitus of the females.
PLATE 9 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 9. Male genitalia (without aedeagus) in dorsal projection and tegumens of M. distans stat. n. (1, 2, 7, 8), M. alatauica (3, 9, 10) and M. aurelia (4–6, 11–14) from different localities: 1, 2, 7, 8—Tian–Shan, the Bajankol river; 3, 9—Burchansarytau; 10—Dzhungarian Alatau, the Koksu river; 4—Chelyabinsk Region, Arkaim; 5—Omsk Region, Kalachinsk; 6, 14—Novosibirsk Region, Karasuk Distr.; 11—Moscow Region, Lukhovitsy Distr.; 12—Crimea, Chatyr–Dah; 13– Vinnitsa Region, Mohyliv–Podilskyi Distr.
PLATE 6 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 6. Photos of M. alatauica from different localities of Dzhungarian Alatau Mts.: 1–4 males, upperside; 5–8—females, upperside; 9–12—males, underside; 13–16—females, underside; 1, 4, 8, 9, 12, 16—the Tentek river; 2, 3, 5, 6, 10, 11, 13, 14—Burchansarytau, the Usek river; 7, 15—the Tyshkan Mts.
PLATE 2 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 2. Phylogenetic tree showing the relationship between species of the genus Mellicta according to the analysis of 658 bp the COI gene fragment. A phylogenetic tree was constructed using the Bayesian analysis (BA) and the Maximum Likelihood (ML) methods. The nodes are marked with Bayesian posterior probabilities (PP) and bootstrap (BS). Aglais io and Nymphalis antiopa used as outgroups.
PLATE 5 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 5. Photos of M. aurelia from different localities: 1–8 males, upperside; 9–12—females, upperside; 13–20—males, underside; 21–24—females, underside; 1, 13—Crimea, Chatyr–Dah; 2, 14—Vinnitsa Region., Mohyliv–Podilskyi Distr.; 3, 15—Moscow Region, Yegoryevsk Distr.; 4, 16—Republic of Bashkortostan, Uchaly Distr.; 5, 17—Orenburg Region, Buzuluk; 6, 18—Volgograd Region, Kamyshyn Distr.; 7, 19—Chelyabinsk Region, Arkaim; 8, 20—Novosibirsk Region, Karasuk Distr.; 9, 21—Crimea, Sudak, Lesnoe Vill.; 10, 22—Orenburg Region, Kuvandyk; 11, 23—Chelyabinsk Region, Chebarkul; 12, 24—Novosibirsk Region, Karasuk Distr.
PLATE 10 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 10. Female genitalia (without the anal papillae, copulatory bursa, and anterior and posterior apophyses) of M. distans stat. n. (1–3) and M. alatauica (4–6) from different localities: 1–3—Tian–Shan, the Bajankol river; 4—Burchansarytau; 5—Kulja; 6—Dzhungarian Alatau, the Kora river. The red arrow points a short postvaginal plate. The blue arrow points rounded side lobes, protruding sideways. The green arrow points an enlarged antrum.
PLATE 1 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 1. Distribution of M. distans stat. n., M. alatauica, M. aurelia and M. menetriesi in Kazakhstan and adjacent territories.
PLATE 8 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 8. Structures of male genitalia (a—valva, b—aedeagus) of M. aurelia from different localities: 1—Moscow Region, Lukhovitsy Distr.; 2—Crimea, Chatyr–Dah; 3—Vinnitsa Region, Mohyliv–Podilskyi Distr.; 4—Republic of Bashkortostan, Uchaly Distr.; 5—Orenburg Region, Buzuluk; 6—Volgograd Region, Kamyshyn Distr.; 7—Chelyabinsk Region, Chebarkul; 8—Chelyabinsk Region, Arkaim; 9—Novosibirsk Region, Karasuk Distr. The red arrow points a down–curved caudal process of the valva. The blue arrow points a straight and is directed upwards vesica.
PLATE 11 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 11. Female genitalia (without the anal papillae, copulatory bursa, and anterior and posterior apophyses) of M. aurelia from different localities: 1, 2—Crimea, Ai–Petri; 3—Vinnitsa Region, Mohyliv–Podilskyi Distr.; 4—Republic of Bashkortostan, Uchaly Distr.; 5—Novosibirsk Region, Karasuk Distr.; 6—Chelyabinsk Region, Chebarkul. The red arrow points a short postvaginal plate.
PLATE 4 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 4. Photos of M. distans stat. n. from Tian–Shan: 1–16—E. edge of Terskei Alatau, the Bajankol river (1–4—males, upperside; 5–8—females, upperside; 9–12—males, underside; 13–16—females, underside); 17, 18—Holotype, male, the Tekkes river, Trustees Natural History Museum, used with permission. Photo A. Devyatkin.
PLATE 7 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 7. Structures of male genitalia (a—valva, b—aedeagus) of M. distans stat. n. (1–6) and M. alatauica (7–9) from different localities: 1–6—Tian–Shan, the Bajankol river; 7—Dzhungarian Alatau, the Koksu river; 8, 9—Burchansarytau. The red arrow points to a down–curved caudal process of the valva. The blue arrow points a curved and directed downwards vesica.
FIGURE 1 in A taxonomic review of the coastal genus Iotarphia Cameron (Coleoptera: Staphylinidae: Aleocharinae) with a description of new species based on morphological and molecular characters
FIGURE 1. Neighbor-joining (NJ) tree and single most parsimonious (PA) cladogram of the Iotarphia species with bootstrap values: (a) NJ tree based on partial COI and 28S gene sequences; (b) PA tree based on partial COI and 28S; (c) NJ tree based on partial COI; (d) NJ tree based on partial 28S. Scale bar indicates the expected number of substitutions per site.
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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.