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3,292 results for “DNA Barcode”
FIGURE 28 in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 28. Adults of Siberian Sterrhinae. A—Scopula subpunctaria; B—S. prouti; C—S. flaccidaria; D—S. floslactata.
FIGURE 42 in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 42. Male genitalia of Siberian Sterrhinae. A–C—Idaea descitaria; D–F—Holarctias rufinaria; G–I—H. rufinularia; J–L—Scopula agutsaensis; M–O—S. immorata. A, E, I, L, N—genital segment, ventral view; B—ditto, valvae shifted; C, D, H, K, O—phallos; G, F, J, M—sternite A8. Scale bar—1 mm.
FIGURE 38 in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 38. Female genitalia of Siberian Geometrinae. A—Jodis lactearia; B—J. putata; C—Thalera fimbrialis; D—T. chlorosaria; E—Dyschloropsis impararia; F—Chlorissa viridata; G—C. obliterata. Scale bar—1 mm.
FIGURE 1 in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 1. Species saturation curves of Geometridae of the Baikal region. Orange curve—Sterrhinae, green curve— Geometrinae, blue curve—Archiearinae. The numbers of species are plotted on the y-axis.
FIGURE 2. Mystacides rivularis n in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 2. Mystacides rivularis n. sp. 2A–2E, male genitalia: 2A, left lateral; 2B, dorsal; 2C, ventral; 2D, phallus, left lateral; 2E, phallus, ventral. 2F–2I, female genitalia: 2F, 2I, left lateral; 2G, dorsal; 2H, ventral. Specimens from the type locality, Shimizu-chô, Shizuoka, Honshû (2A–2H) and Tomakomai-shi, Hokkaidô (2I).
FIGURE 5 in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 5. Mystacides azureus (Linnaeus 1761). 5A–5J, male genitalia: 5A, 5F, left lateral; 5B, 5G, dorsal; 5C, 5H, ventral; 5D, 5I, phallus, left lateral; 5E, 5J, phallus, ventral. 5K–5M, female genitalia: 5K, 5M, left lateral; 5L, ventral. 5A–5E, specimens from Tomakomai-shi, Hokkaidô; 5F–5J, 5M, specimens from Ômachi-shi, Nagano, Honshû; 5K, 5L, specimens from Chitoseshi, Hokkaidô.
FIGURE 7 in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 7. The maximum likelihood phylogeny of Mystacides based on the COI barcode sequences. For males of M. azureus (Linnaeus 1761) from Japan, morphological types of segment X are abbreviated to the right of the country names as follows: S, Short type; L, Long-twist type; R, Reversal type.
FIGURE 1 in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 1. Eye proportions in analyzed Mystacides spp. An outline drawing of the dorsal view of the head showing the measurement points is inserted in the diagram.
FIGURE 4. Mystacides moritai n in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 4. Mystacides moritai n. sp. 4A–4E, male genitalia from the type locality, Shima-shi, Mie, Honshû: 4A, left lateral; 4B, dorsal; 4C, ventral; 4D, phallus, left lateral; 4E, phallus, ventral. 4F–4H, female genitalia from Tsuruga-shi, Fukui, Honshû: 4F, left lateral; 4G, dorsal; 4H, ventral. 4I, map of collection sites.
FIGURE 6 in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 6. Variation of male genitalia in 5 populations and map of collection sites of Mystacides azureus (Linnaeus 1761); the dorsal aspect of tergum X (left) and left lateral aspect of left inferior appendage (right) for each individual are shown. 6A1– 6A5, Kushiro, Hokkaidô; 6B1–6B4, Nanae-chô, Hokkaidô; 6C1–6C6, Shimoda-shi, Shizuoka, Honshû; 6D1–6D5, Ômachi-shi, Nagano, Honshû; 6E1–6E6, Shima-shi, Mie, Honshû. 6F, map of collection sites. Asterisks indicate mirror-reversed images for easy comparison.
FIGURE 3 in DNA barcoding facilitates discovery and description of two new species of the Mystacides azureus Species Group (Trichoptera: Leptoceridae) in Japan
FIGURE 3. Variation of male genitalia and map of collection sites of Mystacides rivularis n. sp.; the dorsal aspect of tergum X (left) and left lateral aspect of left inferior appendage (right) for each individual are shown. 3A1, 3A2, Horokanai-chô, Hokkaidô; 3B1, 3B2, Tomakomai-shi, Hokkaidô; 3C1, Tatsuko-machi, Aomori, Honshû; 3D1, Nishimeya-mura, Aomor, Honshû; 3E1, Nishikawa-chô, Yamagata, Honshû; 3F1–3F3, Shimizu-chô, Shizuoka, Honshû. 3G, map of collection sites. Asterisks indicate mirror-reversed images for easy comparison.
FIGURE 3 in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 3. Neighbor joining tree of partial COX 1 sequences (655bp) of some Orthocladinae species. Bootstrap values on nodes. Scale is based on the number of base substitutions per site. Tags shown the GenBank or BOLD system accession code| species|collection number|country of the record.
FIGURE 2. Symbiocladius wygodzinskyi, A–B in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 2. Symbiocladius wygodzinskyi, A–B, larva on a Leptophlebidae host, C, larvae in process of pupation on a Leptophlebidae host, D cephalic capsule, E thoracic horn.
FIGURE 1 in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 1. Records in provinces or states of Symbiocladius in the world. Records of S. wygodzinskyi and Symbiocladius species with available COX1 sequences.
DNA-barcoded signal amplification for imaging mass cytometry enables sensitive and highly multiplexed tissue imaging
<p>Tiff images, single cell data, and cell masks for the publication "DNA-barcoded signal amplification for imaging mass cytometry enables sensitive and highly multiplexed tissue imaging". The code used to produce the results of this study is available at https://github.com/BodenmillerGroup/SABER-IMC_publication</p>
FIGURE 2 in DNA barcoding of the genus Apaidia Hampson, 1900 for species delimitation from Western Mediterranean fauna (Lepidoptera, Erebidae)
FIGURE 2. Distribution of Apaidia samples studied (red squares: A. mesogona; green triangles: A. rufeola; black circles: A. barbarica) Note that each point may represent more than one specimen. The map was created using www.simplemappr.net.
FIGURE 1. A, B in DNA barcoding of the genus Apaidia Hampson, 1900 for species delimitation from Western Mediterranean fauna (Lepidoptera, Erebidae)
FIGURE 1. A, B. Male and female specimens of Apaidia mesogona; C, D. Male and female specimens of Apaidia barbarica; E, F. Male and female specimens of Apaidia rufeola (Photographies by J. Gastón).
FIGURE 3 in DNA barcoding of the genus Apaidia Hampson, 1900 for species delimitation from Western Mediterranean fauna (Lepidoptera, Erebidae)
FIGURE 3. Neighbour-Joining tree (K2P; constructed with MEGA6; COI 5'> 600 bp) including 20 sequences of selected Apaidia and compared to Lithosiina species Pelosia muscerda and Lithosia quadra, and Nudariina species Miltochrista miniata and Paidia rica as outgroups. The depth of each branch shows divergence between lineages. Bootstrap values> 50% are provided at major nodes. The scale bar represents 0.01 genetic difference.
FIGURES 70–72 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 70–72. Notoreas perornata, genitalia of selected populations (population code in brackets): 70. male genital capsule; 71. phallus; 72. female genitalia. 70, 71. Wairau Bar MB (2c), NZAC slide Notoreas 65; 72. Karioitahi Beach AK (1a), NZAC slide Notoreas 60.
FIGURES 73–76 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 73–76. Notoreas perornata, female genitalia of selected populations (population code in brackets). 73. Pureora Lodge TO (1b), NZAC slide Notoreas 5; 74. Castlepoint WA (1e), NZAC slide Notoreas 71; 75. Te Humenga Pt WA (2a), NZAC slide Notoreas 9; 76. Cape Farewell NN (2b), NZAC slide Notoreas 51.
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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.