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1,394 results for “Drosophilidae”
FIG. 4 in The Drosophila (Sophophora) obscura species group in the Americas (Diptera: Drosophilidae): review, revisions, and three new species
FIG. 4. Frontal view of heads of representative species of the affinis subgroup. A. D. affinis, male. B. D. chibcha, n. sp., male holotype (ASG 05); C. D. tolteca, male (ASG 23); D. zapoteca, n. sp., male holotype (ASG 20). Note differences in development of the facial carina compared with faces in figure 3.
FIG. 7 in The Drosophila (Sophophora) obscura species group in the Americas (Diptera: Drosophilidae): review, revisions, and three new species
FIG. 7. Oviscapts and spermathecae (lateral views) of species in the affinis subgroup, with apical details for three species. A. D. affinis (ASG 28); B. D. athabasca (ASG 30); C. D. azteca (ASG 15); D. D. chibcha, n. sp. (ASG 17); E. D. dobzhanskii (ASG 33); F. D. narragansett (ASG 11); G. D. tolteca (ASG 24).
FIG. 1 in The Drosophila (Sophophora) obscura species group in the Americas (Diptera: Drosophilidae): review, revisions, and three new species
FIG. 1. Distribution map of species in the affinis subgroup. Distributions derived from Miller (1958), M. Miller et al. (2017), new records provided in the present paper, and more recent published reports. For distributions of species in the pseudoobscura group, see Dobzhansky and Epling (1944) and Heed and O'Grady (2000). Distribution boundaries are approximate, especially northernmost boundaries.
FIG. 2 in The Drosophila (Sophophora) obscura species group in the Americas (Diptera: Drosophilidae): review, revisions, and three new species
FIG. 2. Heads and thoraces (lateral view) of representative New World species of the obscura group (A–D), and a male midleg of D. cuauhtemoci (E). A. D. chibcha holotype, n. sp. (ASG 05); B. D. maya holotype. C. D. narragansett paralectotype male. D. D. seminole holotype. E. D. cuauhtemoci, male midleg (lateral view), paratype.
Figs 7–10 in New Species And Records Of Hypselothyrea De Meijere (Diptera, Drosophilidae)
Figs 7–10. Terminalia of Hypselothyrea guttata DUDA: 7 = apex of epandrium, cercus and surstylus, broadest extension (subventral view), 8 = hypandrium and genitalia, ventral view, 9 = spermatheca,
Figs 11–16. 11–13 in New Species And Records Of Hypselothyrea De Meijere (Diptera, Drosophilidae)
Figs 11–16. 11–13 = Hypselothyrea paraguttata TAKADA et MOMMA, male terminalia: 11 = surstylus, broadest extension, 12 = phallus, lateral view, 13 = hypandrium and genitalia, ventral view. 14–16 = H. mixta sp. n., paratypes, terminalia: 14 = hypandrium and genitalia, ventral view, 15 = surstylus, broadest extension, 16 = oviscapt, lateral view. Scale bars: 0.05 mm (Figs 11, 15), 0.1 mm
Figs 2–6. 2–4 in New Species And Records Of Hypselothyrea De Meijere (Diptera, Drosophilidae)
Figs 2–6. 2–4 = Hypselothyrea deficiens sp. n.: 2 = oviscapt, sublateral view, 3 = apex of epandrium and surstylus, broadest extension, 4 = hypandrium and genitalia, ventral view. 5–6 = H. fascipennis DE MEIJERE: 5 = surstylus, broadest extension, 6 = hypandrium and genitalia, ventral view. Scale
Figs 24–31. 24 in New Species And Records Of Hypselothyrea De Meijere (Diptera, Drosophilidae)
Figs 24–31. 24. Hypselothyrea (Deplanothyrea) amputata sp. n., holotype male, wing. 25–31. H. (D.) terminalia: 25–27 = H. (D.) amputata sp. n., holotype, 25 = apex of epandrium and surstylus, broadest extension, 26 = surstylus, broadest extension, medial view, 27 = hypandrium and genitalia, ventral view. 28 = H. (D.) formosana sp. n., paratype, oviscapt, lateral view. 29–30 = H. (D.) longimana sp. n., paratype: 29 = surstyli, in view of the broadest extension of the right surstylus, 30 = hypandrium and genitalia, ventral view. 31 = H. (D.) subaptera sp. n., paratype female, oviscapt. Scale
Figs 17–23. 17–19 in New Species And Records Of Hypselothyrea De Meijere (Diptera, Drosophilidae)
Figs 17–23. 17–19 = Hypselothyrea paralanigera sp. n., paratypes, terminalia: 17 = surstyli, in view (almost ventral) of the broadest extension of the right surstylus, 18 = hypandrium and genitalia, ventral view (hypandrium is almost perpendicular to this plane), 19 = oviscapt, lateral view. 20–23 = H. paratenuis sp. n., paratypes, terminalia: 20 = surstylus, broadest extension (subventral view), 21 = medial part of hypandrium and genitalia, ventral view (hypandrium is almost perpendicular to this plane), 22 = oviscapt, lateral view, 23 = spermatheca (drawn when in water). Scale bars: 0.05 mm
Fig. 1 in Survey for spotted-wing drosophila (Diptera: Drosophilidae) in the five-county nursery production region of middle Tennessee, USA
Fig. 1. Average trap captures of Drosophila suzukii males (gray triangles) and females (black circles) by week in 2013 and 2014. Weeks with an asterisk above them indicate significant differences (P <0.05) between the sexes by pair-wise LSMeans comparison in the negative binomial regression analysis (PROC GENMOD).
Fig. 2 in Survey for spotted-wing drosophila (Diptera: Drosophilidae) in the five-county nursery production region of middle Tennessee, USA
Fig. 2. Average trap captures of Drosophila suzukii in red (black circles) and yellow traps (gray triangles) by week in 2013 and 2014. No significant differences (P> 0.05) were found between the colors by pair-wise LSMeans comparison in the negative binomial regression analysis (PROC GENMOD).
Fig. 3 in Survey for spotted-wing drosophila (Diptera: Drosophilidae) in the five-county nursery production region of middle Tennessee, USA
Fig. 3. Adult Drosophila suzukii males (gray triangles) and females (black circles) captured from a yeast-baited deli cup trap in a plot of mixed Cornus species at the Otis L. Floyd Nursery Research Center during 2014 and 2015.
Fig. 2 in Drosophila suzukii (Diptera: Drosophilidae) arrives at Minas Gerais State, a main strawberry production region in Brazil
Fig. 2. Damaged strawberry in the field with drosophilid flies including a Drosophila suzukii male (inlet) with its characteristic wing black dots (arrows) and 2 adults of Zaprionus indianus (white circles), scale bar = 5 mm.
Fig. 1 in Drosophila suzukii (Diptera: Drosophilidae) arrives at Minas Gerais State, a main strawberry production region in Brazil
Fig. 1. Drosophila suzukii adult female collected at Minas Gerais State, Brazil. (A) Female on a strawberry fruit in the field, scale bar = 3 mm; (B) D. suzukii egg laid inside the fruit (white box), scale bar = 5 mm; (C) oviposition hole (white circle) with the egg's spiracles (black arrow) coming out. The egg laid beneath the fruit epidermis is delimited by a white ellipse, scale bar = 500 μm; (D) the female from image A viewed under microscope, scale bar = 500 μm; and (E) the female characteristic, serrated ovipositor, scale bar = 200 μm.
Fig. 3 in Novel aspects of Drosophila suzukii (Diptera: Drosophilidae) biology and an improved method for culturing this invasive species with a modified D. melanogaster diet
Fig. 3. Effect of triethylamine anesthetic exposure on the recovery of Drosophila adults: D. melanogaster (white circles, n = 181 adults), D. suzukii (black circles, n = 175 adults).
Fig. 2 in Novel aspects of Drosophila suzukii (Diptera: Drosophilidae) biology and an improved method for culturing this invasive species with a modified D. melanogaster diet
Fig. 2. Effects of dietary ethanol (normal environmental ethanol range ≈ 0– 9% ethanol) on Drosophila suzukii survival when compared with D. melanogaster tolerance to ethanol (top graph) and sex-specific sensitivities of D. suzukii adults to ethanol (bottom graph). Summary of probit analyses are provided and statistics with bo = intercept estimate, b1 = estimated slope estimate for each fly species, with b1 = 0 for the baseline control in each graph (D. suzukii [top graph], D. suzukii males [bottom graph]).
Fig. 1 in Novel aspects of Drosophila suzukii (Diptera: Drosophilidae) biology and an improved method for culturing this invasive species with a modified D. melanogaster diet
Fig. 1. Dietary manipulation of Drosophila suzukii cultures based on the use of 5 berry species (blackberry, strawberry, black cherry, blueberry, and grape) with a no-fruit (No Fruit) control (grey bars), and cultures to which yeast was added (+Y) or omitted (−Y) from 4-24® drosophila media (white bars). Asterisks indicate mean differences from 2 respective baseline controls (B), i.e., Blackberry−Y (14 d) and Blackberry+Y (21 d), according to multiple Wilcoxon 2-sample tests.
Fig. 1 in Acca sellowiana (Myrtaceae): a new alternative host for Drosophila suzukii (Diptera: Drosophilidae) in Brazil
Fig. 1. Acca sellowiana fruit showing characteristic symptoms of Conotrachelus psidii attack: damage caused by feeding (black circles) and oviposition (white circles). An adult male of C. psidii is indicated by a black arrow, and an egg-laying adult female of Drosophila sp. is indicated by a white arrow.
Fig. 6 in Phortica eparmata species complex (Diptera, Drosophilidae) from the Oriental Region, with DNA barcoding information of Chinese species
Fig. 6. Phortica (Phortica) yena sp. nov., ♂. A. Epandrium and cercus; B. Surstylus; C. Hypandrium, paramere, aedeagus and aedeagal apodeme. Scale bars = 0.1 mm.
Fig. 5 in Phortica eparmata species complex (Diptera, Drosophilidae) from the Oriental Region, with DNA barcoding information of Chinese species
Fig. 5. Phortica (Phortica) wongding sp. nov., ♂. A. Epandrium and cercus; B. Surstylus; C. Hypandrium, paramere, aedeagus and aedeagal apodeme. Scale bars = 0.1 mm.
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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)
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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.