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3,292 results for “DNA Barcode”
FIGURE 12 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURE 12. Aphodius (A.) hydrochaeris, third instar larva, labio-maxillary complex, SEM, dorsal view (above) and ventral view (below).
FIGURE 36 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURE 36. Aphodius (B.) ictericus, third instar larva, labio-maxillary complex, SEM, dorsal view (above) and ventral view (below).
FIGURES 13–21 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURES 13–21. Aphodius (A.) hydrochaeris, third instar larva. 13–15, labrum in dorsal (13) and ventral (14, 15[SEM]) view; 16–17, left mandible in dorsal (16) and ventral (17) view; 18–19, right mandible in dorsal (18) and ventral (19) view; 20–21, labio-maxillary complex in dorsal (20) and ventral (21) view.
FIGURE 7 in One new species and one new record for the genus Mesogastrura (Collembola, Hypogastruridae) from Korean caves, with DNA barcodes
FIGURE 7. Mesogastrura seotalensis sp. nov.; a. SEM image showing labial palp and b. papillae B and D. Scale bar were presented in each pictures.
FIGURE 6 in One new species and one new record for the genus Mesogastrura (Collembola, Hypogastruridae) from Korean caves, with DNA barcodes
FIGURE 6. Mesogastrura seotalensis sp. nov.; a. Labial palp; b. Labial palp and its guard chaetae. Scale bar: 0.00125 mm.
FIGURE 41 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 41. Stegana (Steganina) fuscipes Li & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B. Surstylus in ventral view; C, D. Hypandrium, pregonite, aedeagus, and phallapodeme in ventral and lateral views; E, F. Aedeagal sheath in ventral and lateral views; G. Subepandrial sclerite in ventral view.
FIGURE 58 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 58. Stegana (Steganina) rava Cui & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B. Surstylus in ventral view; C, D. Hypandrium, pregonite, aedeagus, and phallapodeme in ventral and lateral views; E, F. Aedeagal sheath in ventral and lateral views; G. Subepandrial sclerite in ventral view.
FIGURE 39 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 39. Stegana (Steganina) formosa Zhang & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B. Surstylus in ventral view; C, D. Hypandrium, pregonite, aedeagus, phallapodeme, and aedeagal sheath in ventral and lateral views; E. Subepandrial sclerite in ventral view.
FIGURE 37 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 37. Stegana (Steganina) flabella Li & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B. Surstylus in ventral view; C, D. Hypandrium, pregonite, aedeagus, and phallapodeme in ventral and lateral views; E, F. Aedeagal sheath in ventral and lateral views; G. Subepandrial sclerite in ventral view.
FIGURE 28 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 28. Stegana (Steganina) baoxing Li & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B, C. Hypandrium, pregonite, aedeagus, and phallapodeme in ventral and lateral views; D, E. Aedeagal sheath in ventral and lateral views; F. Subepandrial sclerite in ventral view.
FIGURE 45 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 45. Stegana (Steganina) kanda Cui & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B, C. Hypandrium, pregonite, aedeagus, and phallapodeme in ventral and lateral views; D, E. Aedeagal sheath in ventral and lateral views; F. Subepandrial sclerite in ventral view.
FIGURE 35 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 35. Female terminalia in Stegana (Steganina) curvitabulata Cui & Chen, sp. nov. (A–C) and S. (S.) daiya Cui &
FIGURE 21 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 21. Stegana (Steganina) marenubila Cui & Chen, sp. nov., male terminalia. A. Epandrium, surstylus, and cercus in lateral view; B, C. Hypandrium, aedeagus, phallapodeme, and aedeagal sheath in ventral and lateral views; D. Subepandrial sclerite in ventral view.
FIGURE 1-2 in Revision of the subgenus Stegana (Steganina) from China, with assessment of species delimitation using DNA barcodes (Diptera, Drosophilidae)
FIGURE 1-2. An un-rooted, neighbor-joining (NJ) tree constructed using 435 DNA barcode sequences of 102 Steganina species. Numbers around the nodes are bootstrap percentages (BPs). BPs lower than 50 are not shown. The bar indicate the estimated number of substitutions per site.
FIGURE 29 in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 29. Adults of Siberian Sterrhinae. A—Scopula aequifasciata; B—S. cajanderi; C—S. albiceraria; D—Cyclophora albipunctata.
Fig. 2 in Taxonomic and Biogeographical Status of Three Species of the Spider Crabs of the Genus Acanthonyx Latreille, 1828 (Majoidea: Epialtidae) as Determined by DNA Barcoding and Morphological Analyses Along the Western Atlantic
Fig. 2. Overview of samples of Acanthonyx Latreille, 1828 and some parts of their body. "A. petiverii" H. Milne Edwards, 1834, male CL 13.5 mm (CCDB 1063). (A) dorsal view, (B) ventral view; "A. dissimulatus" Coelho, 1993 male CL 12.2 mm (CCDB 1421) (C) dorsal view, (D) ventral view; (E) bifid rostrum, male CL 24.5 mm (CCDB 3949); (F) dorsal view of male left cheliped, CL 24.5 mm (CCDB 3949); (G) ventral view of female right cheliped, CL 8.3 mm (CCDB 3423); (H) subchela of the propodus of the last three ambulatory pereopods, male CL 24.5 mm (CCDB 3949). Scale bars: 5 mm (A, B, C, D, F); 2 mm (E, G); 0.6 mm (H). The species names in inverted commas refer to the original identification.
Fig. 1 in Taxonomic and Biogeographical Status of Three Species of the Spider Crabs of the Genus Acanthonyx Latreille, 1828 (Majoidea: Epialtidae) as Determined by DNA Barcoding and Morphological Analyses Along the Western Atlantic
Fig. 1. Genetic comparison between species of the genus Acanthonyx Latreille, 1828. Phylogram obtained from Maximum Likelihood analysis of barcoding COI sequences. The numbers are significance values for 1000 bootstraps; values ≤ 50% are not shown. The species names in inverted commas refer to the original identification (*GenBank sequences: JQ305885; JQ305884, EU682455, EU682454, EU682857, EU682856; A: Central and South America; ATL: Atlantic coast; B: North America; BA: Bahia; Br: Brazil; CR: Costa Rica; Mx: Mexico; SP: São Paulo; Pa: Panama; PE: Pernambuco; USA: United States of America; Ve: Venezuela).
FIGURES 58–61 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 58–61. Notoreas perornata live adults settling and nectaring on Pimelea. 58, 59. Female (1a), Glinks Gully ND, 9 Nov 2012, photos by Olivier Ball; 60, 61. Female (2a), Onoke Spit WN, 2 Dec 2020, photos by Eric Edwards.
FIGURES 25–30 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 25–30. Notoreas perornata adults: 25–27. (1e); 28–30. (2a). 25. Female upperside, Castlepoint WA; 26. Female underside (same specimen as Fig. 24); 27. Female underside (same specimen as Fig. 25); 28. Male upperside, L. Kohangapiripiri WN; 29. Male upperside, Titahi Bay WN; 30. Male upperside, Te Humenga Pt WN.
FIGURES 14–18 in Wing pattern variation and DNA barcodes defy taxonomic splitting in the New Zealand Pimelea Looper Notoreas perornata (Walker) (Lepidoptera: Geometridae: Larentiinae): the importance of populations as conservation units
FIGURES 14–18. Notoreas perornata adults (1c). 14. Male upperside, Oeo–Opunake Cliffs TK; 15. Female upperside, Oeo Cliffs TK; 16. Female upperside, Pihama Cliffs TK; 17. Male underside (same specimens as Fig. 14); 18. Female underside (same specimen as Fig. 15).
ScienceDex guides
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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.