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1,394 results for “Drosophilidae”
Figure 5 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 5 Holotype of Hirtodrosophila brasiliensis n. sp.: a, head (anterolateral view); b, thorax (dorsal view); c, head and thorax (lateral view); d, abdomen (lateral view); e, abdomen (dorsal view); f, wing.
Figure 4 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 4 Holotype of Hirtodrosophila fluminensis n. sp.: a, posterior end of abdomen (ventral view); b, posterior end of abdomen (lateral view); c, articulated periphallic and phallic organs (posteroventral view); d, articulated periphallic and phallic organs (lateral view); e, epandrium and associated sclerites (posterior view); f, hypandrium (ventral view); g, phallus and associated sclerites (ventral view); h, phallus and associated sclerites (lateroventral view); i, phallus and associated sclerites (lateral view).Scale bars: 0.1 mm.
Figure 10 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 10 Map showing the collection records of H.pilosa n.sp.,H.fluminensis n.sp.,H.brasiliensis n. sp., and H. sp.1.
Figure 3 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 3 Holotype of Hirtodrosophila fluminensis n. sp.: a, head (anterolateral view); b, thorax (dorsal view); c, head and thorax (lateral view); d, abdomen (lateral view); e, abdomen (dorsal view); f, wing.
Figure 1 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 1 Holotype of Hirtodrosophila pilosa n. sp.: a, head (anterolateral view); b, thorax (dorsal view); c, head and thorax (lateral view); d, abdomen (lateral view); e, abdomen (dorsal view); f, wing. Abbreviations: a dc s, anterior dorsocentral seta; a rc frorb s, anterior reclinate fronto-orbital seta; ap sctl s, apical scutellar seta; ar, arista; b sctl s, basal scutellar seta; C, costal vein; co lap, costal lappet; CuA+CuP, anterior branch of cubital vein + posterior branch of cubital vein; d ar branch, dorsal aristal branch; dm-m, discal medial crossvein; h, humeral crossvein; M1, first branch of medial vein; M4, fourth branch of medial vein; p dc s, posterior dorsocentral setae; p rc frorb s, posterior reclinate fronto-orbital seta; pc frorb s, proclinate fronto-orbital seta; R 2+3, second branch of radial vein; R 4+5, third branch of radial vein; r-m, radial-medial crossvein; sc brk, subcostal break; Sc, subcostal vein; T1, tergite 1; T2, tergite 2; T3, tergite 3; T4, tergite 4; T5, tergite 5; T6, tergite 6; v ar branch, ventral aristal branch; vb, vibrissa.
Figure 2 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 2 Holotype of Hirtodrosophila pilosa n. sp.: a, posterior end of abdomen (ventral view); b, posterior end of abdomen (lateral view); c, articulated periphallic and phallic organs (posteroventral view); d, articulated periphallic and phallic organs (lateral view); e, epandrium and associated sclerites (posterolateral view); f, epandrium and associated sclerites (ventral view); g, hypandrium, phallus and associated sclerites (ventral view); h, hypandrium, phallus and associated sclerites (lateroventral view); i, hypandrium, phallus and associated sclerites (lateral view). Scale bars: 0.1 mm. Abbreviations: cerc, cercus; epand, epandrium; hpp, hypoproctal plate; hypd, hypandrium; pgt, postgonite; ph, phallus; phapod, phallapodeme; pregt, pregonite; sur, surstylus; sbepand scl, subepandrial sclerite; vcl, ventral cecal lobe; vpl, ventral epandrial lobe.
Figure 4 in Living fruits of Psychotria brachyceras Müll. Arg. (Rubiaceae) as the main larval host of Zygothrica orbitalis (Sturtevant, 1916) (Diptera, Drosophilidae)
Figure 4 Unopened puparia of Zygothrica orbitalis. (A) Red arrow pointing to puparium in Psychotria brachyceras fruit; (B) Dorsal view.
Figure 3 Drosophila suzukii collected emerging from a in Living fruits of Psychotria brachyceras Müll. Arg. (Rubiaceae) as the main larval host of Zygothrica orbitalis (Sturtevant, 1916) (Diptera, Drosophilidae)
Figure 3 Drosophila suzukii collected emerging from a fruit of Psychotria brachyceras. (A) Male in lateral view (arrow indicating the dark spot at wing apex, at the intersection of veins R2+3 and C, typical of males of the species); (B) Detail of sex combs in foretarsus (arrows); (C) Posteroventral view of male periphallic organs; (D) Lateral view of the apex of abdomen of a female, showing the serrated oviscapt. Abbreviations: cerc, cercus; epand, epandrium; ovscp, oviscapt; ph, phallus; sur, surstylus.
Figure 1 in Living fruits of Psychotria brachyceras Müll. Arg. (Rubiaceae) as the main larval host of Zygothrica orbitalis (Sturtevant, 1916) (Diptera, Drosophilidae)
Figure 1 Psychotria brachyceras at the Horto Botânico Irmão Teodoro Luis (HBITL), located in the municipality of Capão do Leão, state of Rio Grande do Sul, Brazil. (A) Shrub of P. brachyceras bearing fruits; (B) Close-up of the ripe fruits; (C) Overall view of the flowers.
Figure 8 in Three new Neotropical species of Hirtodrosophila Duda, 1923 (Diptera: Drosophilidae)
Figure 8 Hirtodrosophila sp.1: a, posterior end of abdomen (ventral view); b, posterior end of abdomen (lateral view); c, oviscapt (ventral view); d, oviscapt (lateral view); e, spermatheca (lateral view); f, egg choria (left, dorsal view; right, lateral view). Scale bars: 0.1 mm. Abbreviations: b intrvrt, basal introvert; epiprct, epiproct; fl, filament; hyprct, hypoproct; cap, capsule; mcp, micropyle; ovscp vlv, oviscapt valve; spmth dt, spermathecal duct; S7, seventh sternite; T8, eighth tergite.
Fig. 1 in Presence of Drosophilidae (Diptera: Ephydroidea) flies associated with fig fruits in Morelos, Mexico
Fig. 1. Drosophilidae associated with fig fruits. Zaprionus indianus, (A) female and (B) male; Drosophila suzukii (C) female and (D) male; Drosophila melanogaster (E) female and (F) male.
Fig 2 in Presence of Drosophilidae (Diptera: Ephydroidea) flies associated with fig fruits in Morelos, Mexico
Fig 2. Zaprionus indianus on fig fruits. (A) Oviposition of Zaprionus indianus; (B) fig fruits susceptible to Z. indianus; (C) Z. indianus (lef) and Drosophila melanogaster (right) eggs. The arrow in Fig 2A points to eggs at the entrance of the ostiole.
Fig. 2. Adult spotted wing drosophila emergence from berries 2 in Efficacy of entomopathogenic fungal products for biological control of spotted wing drosophila (Diptera: Drosophilidae) under laboratory conditions
Fig. 2. Adult spotted wing drosophila emergence from berries 2 wk afer re- moval from the arenas. Bars with the same letter are not significantly different from each other (P> 0.05). Error bars represent standard error of the mean.
Fig. 1 in Efficacy of entomopathogenic fungal products for biological control of spotted wing drosophila (Diptera: Drosophilidae) under laboratory conditions
Fig. 1. Percent mortality of spotted wing drosophila afer 24, 48, 72, and 168 h in each treatment (Untrt = deionized water treated control, BotL = BotaniGard low rate, BotH = BotaniGard high rate, PFRL = PFR 97 low rate, and PFRH = PFR 97 high rate). Bars with the same letter are not significantly different from each other (P> 0.05). N. S. = no significant differences (P> 0.05). Error bars represent standard error of the mean.
Fig. 2 in First report of Phytomyza orobanchia (Diptera: Agromyzidae) from Poland and Chymomyza amoena (Diptera: Drosophilidae) on Phelipanche ramosa (Orobanchaceae)
Fig. 2. Phytomyza orobanchia: lateral view of adults male (A) and female (B), female ovipositor sheath (C), male genitalia ventrally (D), and laterally (E).
Fig. 1 in First report of Phytomyza orobanchia (Diptera: Agromyzidae) from Poland and Chymomyza amoena (Diptera: Drosophilidae) on Phelipanche ramosa (Orobanchaceae)
Fig. 1. Phytomyza orobanchia larvae parasitize Phelipanche ramosa tuber (A, B), shoots (C,D), ovary with seeds (E, F), and general habit of fly larvae and pupae (G, H, I).
Fig. 2 in Ecological niche difference associated with varied ethanol tolerance between Drosophila suzukii and Drosophila melanogaster (Diptera: Drosophilidae)
Fig. 2. Mortality of Drosophila melanogaster (A) and Drosophila suzukii (B) adults exposed to varying concentrations of ethanol.
Fig. 4 in Ecological niche difference associated with varied ethanol tolerance between Drosophila suzukii and Drosophila melanogaster (Diptera: Drosophilidae)
Fig. 4. ADH and ALDH activity levels of Drosophila melanogaster and Drosophila suzukii exposed to ethanol. (A) ADH activity in Drosophila melanogaster; (B) ALDH activity in Drosophila melanogaster; (C) ADH activity in Drosophila suzukii; (D) ALDH activity in Drosophila suzukii. Different letters in each figure (A, B, C, D) indicate a significant difference between adults and larvae (One-way ANOVA: α = 0.05).
Fig. 3 in Ecological niche difference associated with varied ethanol tolerance between Drosophila suzukii and Drosophila melanogaster (Diptera: Drosophilidae)
Fig. 3. Mortality of Drosophila melanogaster and Drosophila suzukii larvae exposed to varying concentrations of ethanol.
Fig. 1 in Ecological niche difference associated with varied ethanol tolerance between Drosophila suzukii and Drosophila melanogaster (Diptera: Drosophilidae)
Fig. 1. Ethanol (A) and acetaldehyde (B) contents of grapes infested by Drosophila melanogaster and Drosophila suzukii.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.