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972 results for “morphological barcode”
FIGURES 32–35 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 32–35. Male genitalia of Sattleria (details of valva-vinculum complex). 32, S. graiaeella sp. nov., paratype, slide GEL 1135; 33, ditto, paratype, slide GEL 1136; 34, S. basistrigella Huemer, slide GEL 1139; 35, S. triglavica Povolný, paratype, slide Mus. Vind. 11202.
FIGURES 17–20 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 17–20. Male genitalia of Sattleria. 17, S. graiaeella sp. nov., paratype, slide GEL 1135; 18, S. dzieduszyckii (Nowicki), slide Mus. Vind. 11242; 19, S. triglavica Povolný, paratype, slide Mus. Vind. 11241; 20, S. basistrigella Huemer, slide GEL 1139.
FIGURES 1–8 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 1–8. Adults of Sattleria. 1–2, S. melalecuella (Constant), 1, 3, 2, Ƥ; 3, S. karsholti sp. nov., 3, holotype; 4, S. cottiella sp. nov., 3, holotype; 5, S. izoardi Huemer & Sattler, 3; 6, S. graiaeella sp. nov., 3, holotype; 7, S. basistrigella Huemer, 3; 8, S. triglavica Povolný, 3.
FIGURES 13–16 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 13–16. Male genitalia of Sattleria. 13, S. pyrenaica (Petry), slide GEL 279; 14, S. cottiella sp. nov., paratype, slide GEL 1144; 15, S. izoardi Huemer, holotype, slide GEL 1145; 16, S. marguareisi Huemer & Sattler, paratype, slide GEL 150.
FIGURES 9–12 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 9–12. Male genitalia of Sattleria. 9, S. melaleucella (Constant), slide LMP 76; 10, ditto, slide LMP 102; 11, S. arcuata Pitkin & Sattler, paratype, slide GEL 159; 12, S. karsholti sp. nov., paratype, slide LMP 71.
FIGURES 28–31 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 28–31. Male genitalia of Sattleria (details of valva-vinculum complex). 28, S. cottiella sp. nov., paratype, slide GEL 1144; 29, ditto, paratype, slide GEL 1146; 30, S. izoardi Huemer & Sattler, holotype, slide GEL 1145; 31, ditto, slide GEL 1049.
FIGURES 24–27 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 24–27. Male genitalia of Sattleria (details of valva-vinculum complex). 24, S. karsholti sp. nov., paratype, slide LMP 74; 25, ditto, paratype, slide LMP 71; 26, S. melalecuella (Constant), slide LMP 76; 27, ditto, slide LMP 102.
FIGURES 21–23 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 21–23. Male genitalia of Sattleria. 21, S. breviramus Pitkin & Sattler, slide GEL 154; 22, S. stryriaca Pitkin & Sattler, paratype, slide 91/230 P.H.; 23, S. angustispina Pitkin & Sattler, paratype, slide CG 84.
FIGURE 36 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURE 36. Neighbour joining tree of the Sattleria (Kimura 2 Parameter) based on sequences of the mtDNA COI gene (barcode fragment 5', 658 bp), except for S. arcuata (307 bp) and S. dzieduszyckii (623 bp).
FIGURE 4 in Parapercis lutevittata, a new cryptic species of Parapercis (Teleostei: Pinguipedidae), from the western Pacific based on morphological evidence and DNA barcoding
FIGURE 4. Comparisons of coloration between (A) Parapercis lutevittata, ASIZP0071627, holotype, 135 mm SL and (B) P. sexfasciata, ASIZP0071631, 142.7 mm SL. a- a large dark-brown blotch and several small black dots vs. a big deep-brown or black blotch on base of pectoral fin; b- absence vs. presence of black spots on base of dorsal fin ray membrane; c- yellow dotted strip midlaterally on body vs. yellow dotted lines from lower left running obliquely to upper right; d- presence vs. absence of scattered black dots on and between V-shaped transverse bands along sides of body.
FIGURE 2 in Parapercis lutevittata, a new cryptic species of Parapercis (Teleostei: Pinguipedidae), from the western Pacific based on morphological evidence and DNA barcoding
FIGURE 2. Distribution map of Parapercis lutevittata based on specimens from Japan (solid circles) and Taiwan, including holotype and paratype (solid triangles); and other specimens (open triangles). One additional record from Nha Trang, Vietnam (solid star, data from Prokofiev, 2008).
FIGURE 1 in Parapercis lutevittata, a new cryptic species of Parapercis (Teleostei: Pinguipedidae), from the western Pacific based on morphological evidence and DNA barcoding
FIGURE 1. Holotype of Parapercis lutevittata sp. nov., ASIZP0071627, 135 mm SL, male, from Tashi, Ilan County, northeastern Taiwan. (A) Fresh condition; (B) preserved condition in alcohol.
FIGURE 5 in Parapercis lutevittata, a new cryptic species of Parapercis (Teleostei: Pinguipedidae), from the western Pacific based on morphological evidence and DNA barcoding
FIGURE 5. Neighbour-joining tree of mitochondrial cytochrome c oxidase subunit I (CO I or COX I) sequences of Parapercis lutevittata and P. sexfasciata. 10,000 bootstrap replications.
FIGURE 9–16. Eudicella darwiniana Kraatz, 1880. 9. Male, dorsal view. 10. Female, dorsal view. 11. Male wing. 12. Male labium, ventral view. 13. Female labium, ventral view. 14. Male paramers, frontal view. 15. Male pygidium, frontal view. 16 in Morphology and DNA barcoding reveal a new species of Eudicella from East Africa (Coleoptera: Scarabaeidae: Cetoniinae)
FIGURE 9–16. Eudicella darwiniana Kraatz, 1880. 9. Male, dorsal view. 10. Female, dorsal view. 11. Male wing. 12. Male labium, ventral view. 13. Female labium, ventral view. 14. Male paramers, frontal view. 15. Male pygidium, frontal view. 16. Female pygidium, frontal view.
FIGURE 21 in Morphology and DNA barcoding reveal a new species of Eudicella from East Africa (Coleoptera: Scarabaeidae: Cetoniinae)
FIGURE 21. Maximum likelihood tree (1000 bootstrap replicates) resulting from the phylogenetic analysis of the complete dataset of DNA barcode sequences for 29 specimens. Each specimen is identified by its SampleID code (see Table 2).
FIGURE 1–8. Eudicella nana new species. 1. Male holotype, dorsal view. 2. Female allotype, dorsal view. 3. Male wing, holotype. 4 in Morphology and DNA barcoding reveal a new species of Eudicella from East Africa (Coleoptera: Scarabaeidae: Cetoniinae)
FIGURE 1–8. Eudicella nana new species. 1. Male holotype, dorsal view. 2. Female allotype, dorsal view. 3. Male wing, holotype. 4. Male labium, paratype, ventral view. 5. Female labium, paratype, ventral view. 6. Male parameres, holotype, frontal view. 7. Male pygidium, holotype, frontal view. 8. Female pygidium, allotype, frontal view.
FIGURE 17–20 in Morphology and DNA barcoding reveal a new species of Eudicella from East Africa (Coleoptera: Scarabaeidae: Cetoniinae)
FIGURE 17–20. Clypeal horns of Eudicella (Eudicella). 17. Eudicella nana new species. 18. Eudicella darwiniana Kraatz, 1880. 19. Eudicella pauperata Kolbe, 1884. 20. Eudicella grallii (Buquet, 1836).
FIGURE 1 in Uncovering the hidden biodiversity of natural history collections: Insights from DNA barcoding and morphological characters of the Neotropical genus Orthocomotis Dognin (Lepidoptera: Tortricidae)
FIGURE 1. Phylogenetic tree constructed for Orthocomotis sp. (three species of the tribe Olethreutini were used as an outgroup). The tree was constructed on the basis of a comparison of sequences from the mitochondrial COI fragment using the neighbor joining method. Bootstrap values for neighbor joining, maximum parsimony, maximum likelihood, and posterior probabilities for Bayesian inference are presented. Bootstrap values smaller than 50% (posterior probabilities <0.50) are not shown. Dashes represent no bootstrap or posterior value at a given node. All positions containing gaps and missing data were eliminated. Phylogenetic analyses were conducted using MEGA 6.0 (NJ/MP/ML) and MrBayes 3.1.2 (BI). The analysis involved 65 nucleotide sequences. There were a total of 227 positions in the final dataset.
FIGURE 2 in Uncovering the hidden biodiversity of natural history collections: Insights from DNA barcoding and morphological characters of the Neotropical genus Orthocomotis Dognin (Lepidoptera: Tortricidae)
FIGURE 2. Phylogenetic network constructed for Orthocomotis sp using 110 sequences from mitochondrial COI fragments. The neighbor-net method was used to infer splits within the alignment. Bootstrap values are presented.
FIGURE 21. A in Morphological description and DNA barcoding of Hydrobaenus golovinensis sp. nov. (Diptera: Chironomidae: Orthocladiinae) from the Russian Far East
FIGURE 21. A phylogenetic tree of the 7 species of the genus Hydrobaenus and Chaetocladius perennis (Meigen) (outgroup) based on the mitochondrial cytochrome c oxidase I (COI) barcode gene sequences (658 bp). The phylogenetic reconstruction was performed with the Maximum Likelihood analysis (GTR+G distance model), implemented in MEGA version 7.0 (Kumar et al. 2016). Numbers are support values for 1000 bootstraps. Specimens obtained in this study are in bold.
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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.