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2,120 results for “fly species”
FIG. 2. — Chionea mirabilis n in Chionea (Chionea) mirabilis n. sp., a new species of snow fly (Insecta, Diptera, Limoniidae) from Korea
FIG. 2. — Chionea mirabilis n. sp., holotype ♂, detail of the last abdominal segments of male in ventral view (vacuum mode: variable pressure; VP Target: 4.50 e-001 Torr). Scale bar: 200 μm.
FIG. 3. — Chionea mirabilis n in Chionea (Chionea) mirabilis n. sp., a new species of snow fly (Insecta, Diptera, Limoniidae) from Korea
FIG. 3. — Chionea mirabilis n. sp., holotype ♂, basistyle in dorsal view (vacuum mode: variable pressure; VP Target: 4.50 e-001 Torr). Scale bar: 100 μm.
Figs 2-5 in Dolichopeza reidi nov.sp., a new crane fly species from Lord Howe Island, New South Wales, Australia (Diptera: Tipulidae)
Figs 2-5: Dolichopeza reidi nov.sp., male: (2, 3) hypopygium, dorsal; (4) posterior abdominal segments, lateral; (5) left gonostyli, lateral.
Figures 15–16. Melaloncha species. Fig. 15. M in Revision of the subgenus Udamochiras of Melaloncha beekilling flies (Diptera: Phoridae: Metopininae)
Figures 15–16. Melaloncha species. Fig. 15. M. maculifrons sp. nov., hind leg, anterior. Fig. 16. M. angustifrons sp. nov., abdominal segments 1–6, dorsal.
Figures 8–14. Melaloncha species. Figs 8 & 9 in Revision of the subgenus Udamochiras of Melaloncha beekilling flies (Diptera: Phoridae: Metopininae)
Figures 8–14. Melaloncha species. Figs 8 & 9: Melaloncha (M.) sp. 22. 8. Posterior segments of ovipositor, dorsal. 9. Same, left lateral. Figs 10–12: Intersegment 7–8, dorsal. 10. M. simillima Borgmeier. 11. M. deinocerca Borgmeier. 12. M. trua sp. nov. Figs 13 & 14: Stylet, M. trua sp. nov. 13, ventral. 14, left lateral.
Effects of mycotoxin treatment on fly survival, development time, thorax length, fecundity, and longevity in four mycophagous Drosophila species
<p>Many mycophagous Drosophila species have adapted to tolerate high concentrations of mycotoxins, an ability not reported in any other eukaryotes. Although an association between mycophagy and mycotoxin tolerance has been established in many Drosophila species, the genetic mechanisms of the tolerance are unknown. This study presents the inter- and intraspecific variation in the mycotoxin tolerance trait. We studied the mycotoxin tolerance in four Drosophila species from four separate clades within the immigrans-tripunctata radiation from two distinct locations. The effect of mycotoxin treatment on 20 isofemale lines per species was studied using seven gross phenotypes: survival to pupation, survival to eclosion, development time to pupation and eclosion, thorax length, fecundity, and longevity. We observed interspecific variation among four species, with D. falleni being the most tolerant, followed by D. recens, D. neotestacea, and D. tripunctata, in that order. The results also revealed geographical variation and intraspecific genetic variation in mycotoxin tolerance. This report provides the foundation for further delineating the genetic mechanisms of the mycotoxin tolerance trait.</p>
Figs 7–11 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 7–11. Platyplastinx ibanezbernali sp. nov., female paratype. 7 – head; 8 – wing; 9–10 – egg; 11 – terminalia. Abbreviations: ap – anterior pole, cer – cercus, hyp – hypogynium, pp – posterior pole. Scales in millimeters.
Figs 12–16 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 12–16. Platyplastinx ibanezbernali sp. nov., photographies. 12 – head, male holotype; 13 – head, female paratype; 14 – wing, male paratype; 15 – genitalia, male holotype; 16 – genitalia, female paratype. Scale in μm.
Figs 1–6 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 1–6. Platyplastinx ibanezbernali sp. nov., male holotype. 1 – head; 2 – antennal scape, pedicel and first two flagellomeres; 3 – wing; 4 – epandrium and hypandrium; 5–6 – male genitalia. Abbreviations: asc – ascoids, ata – accessory tenacula, ep – epandrium, es – scape, fl – flagellomere, gns – gonostyli, gnx – gonocoxites, hpd – hypopods, hpr – hypandrium, pd – pedicel, ta – tenaculum. Scale in millimeters.
Figs 56–60 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 56–60. Tipula (Vestiplex) nestor Alexander, 1934, ♂, AQNU. 56. Head, dorsal view. 57. Thorax, dorsal view. 58. Thorax, lateral view. 59. Wing. 60. Abdomen, lateral view. Scale bars = 1.0 mm.
Figs 16–20 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 16–20. Tipula (Vestiplex) medialobata sp. nov., ♂, holotype (coll. Inse-YN0501). 16. Head, dorsal view. 17. Thorax, dorsal view. 18. Thorax, lateral view. 19. Wing. 20. Abdomen, lateral view. Scale bars = 1.0 mm.
Figs 41–45 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 41–45. Tipula (Vestiplex) singularis sp. nov., ♂, holotype (coll. Inse-YN0502). 41. Head, dorsal view. 42. Thorax, dorsal view. 43. Thorax, lateral view. 44. Wing. 45. Abdomen, lateral view. Scale bars = 1.0 mm.
Figs 28–32 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 28–32. Tipula (Vestiplex) paramonovi sp. nov., ♂, holotype (coll. Inse-XZ3769). 28. Head, dorsal view. 29. Thorax, dorsal view. 30. Thorax, lateral view. 31. Wing. 32. Abdomen, lateral view. Scale bars = 1.0 mm.
Figs 21–27 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 21–27. Tipula (Vestiplex) medialobata sp. nov., ♂, holotype (coll. Inse-YN0501). 21. Hypopygium, dorsal view. 22. Hypopygium, lateral view. 23. Hypopygium, ventral view. 24. Right lobe and clasper of gonostylus, lateral view. 25. Ejaculatory apodeme of semen pump. 26. Semen pump, lateral view. 27. Semen pump, dorsal view. Scale bars: 21–23 = 1.0 mm; 24 = 0.5 mm; 25–27 = 1.2 mm.
Figs 6–15 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 6–15. Tipula (Vestiplex) cibagouensis sp. nov., ♂, holotype (coll. Inse-XZ3768). 6. Hypopygium, dorsal view. 7. Tergite nine, ventral view. 8. Hypopygium, lateral view. 9. Hypopygium, ventral view. 10. Left lobe and clasper of gonostylus, lateral view. 11. Dorsal lobe of A9S. 12. Ejaculatory apodeme of semen pump. 13. Semen pump, lateral view. 14. Semen pump, dorsal view. 15. Apex of aedeagus. Abbreviations: see Material and methods. Scale bars: 6–11 = 0.5 mm; 12–14 = 0.6 mm; 15 = 0.25.
Figs 33–40 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 33–40. Tipula (Vestiplex) paramonovi sp. nov., ♂, holotype (coll. Inse-XZ3769). 33. Hypopygium, dorsal view. 34. Hypopygium, lateral view. 35. Hypopygium, ventral view. 36. Left lobe and clasper of gonostylus, lateral view. 37. Dorsal lobe of A9S. 38. Ejaculatory apodeme of semen pump. 39. Semen pump, lateral view. 40. Semen pump, dorsal view. Scale bars: 33–36 = 1.0 mm; 37–40 = 1.2 mm.
Figs 1–5 in Four new crane fly species of the subgenus Vestiplex (Diptera: Tipulidae: Tipula) from Tibet and Yunnan, China
Figs 1–5. Tipula (Vestiplex) cibagouensis sp. nov.,♂, holotype (coll. Inse-XZ3768). 1. Head, dorsal view. 2. Thorax, dorsal view. 3. Thorax, lateral view. 4. Wing. 5. Abdomen, lateral view. Scale bars = 1.0 mm.
Figs 4–8 in Paleopsychoda zherikhini, a new Cretaceous species of moth flies from Taimyr amber (Diptera: Psychodidae: Psychodinae)
Figs 4–8. Paleopsychoda zherikhini sp. n.: (4, 5) holotype no. 3308/13: (4) head and thorax in lateral view, (5) structural details of head, lateral view; (6, 7) paratype no. 3308/14: (6) head, (7) structural details of head, frontal view; (8) wing details of holotype no. 3308/13. Scale bars 0.1 mm in Figs 5, 7 and 0.5 mm in Fig. 8.
Figs 9, 10 in Paleopsychoda zherikhini, a new Cretaceous species of moth flies from Taimyr amber (Diptera: Psychodidae: Psychodinae)
Figs 9, 10. Female genitalia of Paleopsychoda zherikhini sp. n., paratype no. 3308/15: (9) ventro-lateral view, (10) details in ventro-lateral view. Scale bar 0.5 mm.
Figs 10–13. Stichillus necopinatus Beyer, male. 10 in New records of scuttle flies (Diptera: Phoridae) from South Africa, with description of a new species and hitherto unknown males
Figs 10–13. Stichillus necopinatus Beyer, male. 10. Upper part of frons, only bristle sockets shown. 11. Right antenna. 12. Left side of hypopygium. 13. Left side of aedeagus. Scale bars 0.5 mm in Figs 10–12 and 0.1 mm in Fig. 13.
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.