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FIGURE 56 in Review of the Eulamprotes wilkella species-group based on morphology and DNA barcodes, with descriptions of new taxa (Lepidoptera, Gelechiidae)
FIGURE 56. Male genitalia of E. baldizzonei sp. nov., gen. prep. GE/1543 (RSGE); (a–c with phallus removed): a: dorsal view focused on both pedunculi and caudal edge of tegumen, b: dorsal view, c: ventral-lateral view, d: phallus.
FIGURE 58 in Review of the Eulamprotes wilkella species-group based on morphology and DNA barcodes, with descriptions of new taxa (Lepidoptera, Gelechiidae)
FIGURE 58. Neighbor Joining tree (Kimura 2 parameter, built with MEGA 5; cf. Tamura et al. 2011), only sequences (>600 bp) considered. Width of triangles represent sample size, depth the genetic variation within the cluster. Source: DNA Barcode data from BOLD (Barcode of Life Database, cf. Ratnasingham & Hebert 2007).
FIGURES 50–51 in Review of the Eulamprotes wilkella species-group based on morphology and DNA barcodes, with descriptions of new taxa (Lepidoptera, Gelechiidae)
FIGURES 50–51. Female genitalia of Eulamprotes spp. 50, E. wilkella (Zeller), (Italy) gen. slide GEL 1229 P. Huemer; 51, E. ochricapilla (Rebel), (Austria) gen. slide GEL 1228 P. Huemer.
FIGURES 40–45 in Review of the Eulamprotes wilkella species-group based on morphology and DNA barcodes, with descriptions of new taxa (Lepidoptera, Gelechiidae)
FIGURES 40–45. Male genitalia of Eulamprotes spp. 40, E. altaicella sp. nov., paratype, (Russa, Altai) gen. slide GU 13/1359 P. Huemer; 41, ditto, phallus; 42, E. kailai sp. nov., holotype, (Kirgizia) gen. slide GEL 1196 P. Huemer; 43, ditto, phallus; 44, E. kailai sp. nov., paratype, (Kazakhstan) gen. slide GU 13/1358 P. Huemer; 45, ditto, phallus.
FIGURE 11 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 11. Julidine portion of the phylogenetic tree from Westneat and Alfaro (2005), with the newly-available sequences for Sagittalarva inornata added, based on a maximum-likelihood model utilizing nuclear genes Rag2 and Tmo4c4 and mitochondrial genes 12s and 16s (log likelihood = -47392.14). S. inornata is highlighted in red, the New World Halichoeres clade in purple, a large Indo-Pacific Halichoeres clade in yellow, smaller Indo-Pacific clades of Halichoeres in orange and green, Pseudojuloides in pink, the "julidinoid" Pseudolabrines in blue and Cheilio and other non-julidines below. The scale bar at upper left represents 0.02 substitutions per site. The sequences for Rag2, Tmo4c4, 12s, and 16s for S. inornata correspond to GenBank accessions JX684103–6; the accession numbers for the remaining sequences are listed in Table 1 of Westneat and Alfaro (2005).
FIGURE 9 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 9. Photograph and radiograph of the holotype of Sagittalarva inornata, 73 mm SL, USNM 44273, courtesy Sandra Raredon, USNM.
FIGURE 8 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 8. Underwater photograph of juvenile S. inornata in Baja California from videos by Octavio Aburto-Oropeza and Brad Erisman.
FIGURE 1 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 1. Radiograph of the head of the holotype of Sagittalarva inornata (USNM 44273) showing a single pair of enlarged canines at the front of the upper and lower jaws followed by rows of caniniform to coniform teeth, courtesy Sandra Raredon, USNM.
FIGURE 4 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 4. Larva of Pseudojuloides cerasinus from Hawaii, identified by DNA-barcode matching, courtesy David Carlon.
FIGURE 10. A in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 10. A phenetic neighbor-joining tree based on the COI mtDNA sequences of 146 julidine wrasses, including Sagittalarva inornata (with asterisk), following the Kimura two-parameter model (K2P) generated by BOLD. The GenBank accession numbers corresponding to the sequences in the tree are listed in Appendix 1. The scale bar at lower left represents a 2% sequence difference.
FIGURE 3 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 3. Larval labrids of the eastern Pacific Ocean: from top, Sagittalarva inornata 11.6 mm SL & 8.3 mm SL, Halichoeres 13.1 mm SL, Thalassoma 10.2 mm SL (identified by DNA-barcode matching).
FIGURE 7 in Rediscovery of Sagittalarva inornata n. gen., n. comb. (Gilbert, 1890) (Perciformes: Labridae), a long-lost deepwater fish from the eastern Pacific Ocean: a case study of a forensic approach to taxonomy using DNA barcoding
FIGURE 7. Underwater photograph of female S. inornata in Baja California from videos by Octavio Aburto-Oropeza and Brad Erisman.
FIGURES 8–11. Linevitshia prima Makarchenko, pupa. 8 in Morphological redescription and DNA barcoding of Linevitshia prima Makarchenko, 1987 (Diptera: Chironomidae: Diamesinae) from Amur River basin (Russian Far East), with notes on systematics of the genus
FIGURES 8–11. Linevitshia prima Makarchenko, pupa. 8, frontal setae on frontal apotome; 9, tergites III–IV; 10, sternite VIII and anal segment in dorsal view, male; 11, sternite VIII and anal segment in dorsal view, female. Scale bars: Fig. 8: 50 µm; Figs. 9–11: 200 µm.
FIGURES 1–7. Linevitshia prima Makarchenko, male. 1 in Morphological redescription and DNA barcoding of Linevitshia prima Makarchenko, 1987 (Diptera: Chironomidae: Diamesinae) from Amur River basin (Russian Far East), with notes on systematics of the genus
FIGURES 1–7. Linevitshia prima Makarchenko, male. 1, hypopygium in dorsal view (Hokkaido, Japan); 2, 4, gonostylus in various aspects (holotype, Frolovka River, Primorye Territory, Russia); 3, 5–7, gonocoxite and gonostylus from Hokkaido, Japan (3, 5) and from Amur River basin, Russia (6–7). Scale bars: 50 µm.
FIGURES 12–17 in Morphological redescription and DNA barcoding of Linevitshia prima Makarchenko, 1987 (Diptera: Chironomidae: Diamesinae) from Amur River basin (Russian Far East), with notes on systematics of the genus
FIGURES 12–17. Larva of Protanypus sp. (12) and Linevitshia prima Makarchenko (13–17). 12, 13—head, in ventral view; 14, head, in dorsal view; 15, apical part of head setae; 16, branched head setae; 17, labrum. Scale bars: Figs. 15: 20 µm; Figs. 16–17: 50 µm. Fig. 12 after Oliver & Roussel (1983).
FIGURES 24–28 in Morphological redescription and DNA barcoding of Linevitshia prima Makarchenko, 1987 (Diptera: Chironomidae: Diamesinae) from Amur River basin (Russian Far East), with notes on systematics of the genus
FIGURES 24–28. Linevitshia prima Makarchenko, adult male (24–25), pupa (26) and larva (27–28). 24–25, hypopygium in dorsal view from Amur River basin (24) and Hokkaido (25); 26, abdomen of pupa in lateral view; 27, mentum and of premento-hypopharyngeal complex; 28, head in ventral view.
FIGURES 4–5 in A new species of Alopecosa (Araneae: Lycosidae) from Canada: a morphological description supported by DNA barcoding of 19 congeners
FIGURES 4–5. General appearance of Alopecosa koponeni sp. n.: 4 – male, dorsal view (paratype); 5 – female, dorsal view (holotype). Scale bar 1 mm.
FIGURES 2–3 in A new species of Alopecosa (Araneae: Lycosidae) from Canada: a morphological description supported by DNA barcoding of 19 congeners
FIGURES 2–3. Male palpus of the allotype of Alopecosa koponeni sp. n.: 2 – ventral view; 3 –retrolateral view. Scale bar 0.3 mm.
FIGURE 1 in A new species of Alopecosa (Araneae: Lycosidae) from Canada: a morphological description supported by DNA barcoding of 19 congeners
FIGURE 1. Type locality of Alopecosa koponeni sp. n. (red), along collection localities of all other outgroup representatives of Alopecosa used in this study (green).
FIGURE 8 in A new species of Alopecosa (Araneae: Lycosidae) from Canada: a morphological description supported by DNA barcoding of 19 congeners
FIGURE 8. Ultrametric neighbour-joining tree (K2P) showing similarities among 658-bp COI barcode sequences of Alopecosa koponeni sp. n. (in red) and all members of Alopecosa outgroup included in our study. Bootstrap values are based on 500 replicates.
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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.