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3,292 results for “DNA Barcode”
Figs 3–7 in Incidence of louse flies on birds from the Russian Far East (Diptera: Hippoboscidae) and investigation of the status of some taxa by DNA barcoding
Figs 3–7. Hippoboscidae from Muraviovka Park, habitus, dorsal view: 3 — Icosta holoptera; 4 — Ornithoica momiyamai; 5 — Ornithoica unicolor; 6 — Ornithomya aobatonis, stat.rev.; 7 — Ornithomya chloropus. Рис. 3–7. Hippoboscidae парка Муравьёвка, внеШний вид, сверху: 3 — Icosta holoptera; 4 — Ornithoica momiyamai; 5 — Ornithoica unicolor; 6 — Ornithomya aobatonis, stat.rev.; 7 — Ornithomya chloropus.
Fig. 2 in Incidence of louse flies on birds from the Russian Far East (Diptera: Hippoboscidae) and investigation of the status of some taxa by DNA barcoding
Fig. 2: Cytochrome c oxidase subunit I (COI) gene tree for Hippoboscidae. The tree was estimated using maximum likelihood (RAxML). COI sequences used to estimate the tree were obtained from some individuals from Muraviovka park, individuals recollected in Germany, and sequences downloaded from BOLD. Numbers above the branch are bootstrap values. Рис. 2. Дерево субъединицы I цитохром с-оксидаЗы (COI) длЯ Hippoboscidae. Сходство оценивалось с испольЗованием метода максимального правдоподобиЯ (RAxML). Последовательности COI, испольЗованные длЯ оценки дерева, были получены от обраЗцов иЗ парка Муравьёвка, а так же собранных в Германии, и последовательностей, Загруженные иЗ BOLD (Таблица 1). Цифры над уЗлами покаЗывают бутстрап-ЗначениЯ.
FIGURE 3 in DNA Barcodes Identify the Larvae and Unassociated Male of Three Onycholyda Sawflies (Hymenoptera, Pamphiliidae) from China
FIGURE 3. Onycholyda fulvicornis, larval leaf-rolls (A–C) and mature larvae (D–H), all collected at Chanyuansi, Mt. Tianmushan, Zhejiang Province, and photographed indoors by A. Shinohara. A, Leaf-roll on Rubus hirsutus, April 16, 2014; B, leaf-roll on R. hirsutus, April 16, 2014; C, leaf-roll on R. hirsutus, April 14, 2015 (collected April 12); D, F, H, mature larva (sample no. 495), matured and photographed April 28, 2014 (collected April 16); E, G, mature larva (sample no. 573), matured and photographed April 23, 2015 (collected April 9). Remains of egg shells arrowed in A–C.
FIGURE 2 in DNA Barcodes Identify the Larvae and Unassociated Male of Three Onycholyda Sawflies (Hymenoptera, Pamphiliidae) from China
FIGURE 2. Onycholyda xanthogaster, larval leaf-rolls (A–C) and larvae (D–J), photographs taken at the site about 32 km from Baoguosi on Mt. Emeishan, Sichuan Province (A–C) and indoors (D–J) by A. Shinohara in 2014. --- A, Two leaf-rolls on Rubus inopertus, May 24, seen from above; B, same leaf-rolls, seen from below; C, leaf-roll on R. inopertus, May 24; D, E, early instar larva, May 24; F, H, I, middle instar larva, May 24; G, late instar? larva, May 28; J, mature larva (sample no. 607), matured on May 30, photographed on June 2.
FIGURE 1 in DNA Barcodes Identify the Larvae and Unassociated Male of Three Onycholyda Sawflies (Hymenoptera, Pamphiliidae) from China
FIGURE 1. The maximum likelihood tree based on 612 bp of mitochondrial CO1 gene sequence (-ln likelihood = 1722.8469). Numbers on branches indicate bootstrap values for ML and MP analyses (shown only for higher nodes with>50). Each terminal label represents the sample number (upper 28 individuals) or GenBank accession number (lower three).
FIGURE 4 in DNA Barcodes Identify the Larvae and Unassociated Male of Three Onycholyda Sawflies (Hymenoptera, Pamphiliidae) from China
FIGURE 4. Onycholyda tianmushana, male, Kaishan Laodian, Mt. Tianmushan. --- A, Dorsal view; B, ventral view; C, head, frontodorsal view; D, left mandible, dorsal view; E, right mandible dorsal view. A–C, photographed by T. Komatsu.
FIGURE 7 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 7. The male terminalia of A. jaschhofi. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 5 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 5. Habitus Allodia keurbosensis sp. nov. Holotype. Photo: Karsten Sund, Natural History Museum, University of Oslo.
FIGURE 2 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 2. The female terminalia of A. nyeriensis. A, Lateral view; B, Dorsal view; C, Hypogynium, ventral view. Abbreviations: ce = cerci, g ap = gonapophysis, hyp v = hypogynal valves, lab = labia, st = sternite, tg = tergite. Scale bar = 1µm.
FIGURE 4 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 4. The male terminalia of A. drakensbergensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 1 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 1. The male terminalia of A. nyeriensis. A, Dorsal view; B, Lateral view; C, Ventral view; D, Gonostylus from inner side; E, Hypandrial lobe; F, Dorsal structures; G, Basal part of gonostylus. Abbreviations: ap = apodeme, b par = basal part, cerc = cerci, d lb = dorsal lobe, gc = gonocoxite, hyp = hypoproct, hyp lb = hypandrial lobe, i br = internal branch, m lb = median lobe, ps cerc = pseudocerci, tg 9 = tergite 9. Scale bar = 1µm.
FIGURE 3 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 3. The male terminalia of A. mazumbaiensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 6 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 6. The male terminalia of A. keurbosensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 11. Identification tree. Neighbor-Joining analysis involving 20 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 11. Identification tree. Neighbor-Joining analysis involving 20 CO1 sequences. Evolutionary distances were calculated using the p-distance model. Abbreviations: M = male, F = female. Sequences retrieved from BOLD (Ratasingham & Hebert 2007) are labelled with Process ID (see Appendix 1). See methods for details.
FIGURE 10. Variation between Afrotropical Allodia, gonostylus from inner side. A, A in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 10. Variation between Afrotropical Allodia, gonostylus from inner side. A, A. nyeriensis; B, A. mazumbaiensis; C, A. drakensbergensis; D, A. keurbosensis; E, A. jaschhofi; F, A. karkloofensis. Scale bar = 1µm.
FIGURE 9 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 9. The male terminalia of A. karkloofensis. A: left: dorsal view, right: ventral view, B: Gonostylus from inner side, C: Basal part of gonostylus. Scale bar = 1µm.
FIGURE 8 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 8. The female terminalia of A. jaschhofi. A, Lateral view; B, Dorsal view; C, Hypogynium, ventral view. Scale bar = 1µm.
FIGURE 4 in A new species of Rhinogobius (Pisces: Gobiidae), with analyses of its DNA barcode
FIGURE 4. Rhinogobius maxillivirgatus sp. n. A. Three-dimensional rendering of a paratype based on X-ray microtomography in lateral view, SNHM-F-2016040026, male, 28.0 mm SL; B. Five blotches along dorsal midline of holotype, SNHM-F-2017060018, female, 30.1 mm SL; C. Branchiostegal membrane with up to 20 red spots in fresh preservation of a paratype, SNHM-F-2016100025, male, 23.0 mm SL.
FIGURE 3 in A new species of Rhinogobius (Pisces: Gobiidae), with analyses of its DNA barcode
FIGURE 3. Head lateral-line system of holotype (SNHM-F-2017060018, female, 30.1 mm SL) of Rhinogobius maxillivirgatus sp. n. in A. dorsal, B. lateral, and C. ventral views. Arrow shows ventral edge of gill slit. an, pn, anterior and posterior nares; other characters indicate cephalic canal pores and sensory papillae.
FIGURE 5 in A new species of Rhinogobius (Pisces: Gobiidae), with analyses of its DNA barcode
FIGURE 5. Maximum likelihood tree of Rhinogobius maxillivirgatus sp. n., with congeners based on sequences of full length of cytochrome c oxidase subunit I. The values at nodes are bootstrap support values.
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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.