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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.
Fig. 1 in Comparison of attractants, insecticides, and mass trapping for managing Drosophila suzukii (Diptera: Drosophilidae) in blueberries
Fig. 1. The laboratory assay conducted in a wind chamber testing the effectiveness of baits to attract Drosophila suzukii.
Fig. 3 in Comparison of attractants, insecticides, and mass trapping for managing Drosophila suzukii (Diptera: Drosophilidae) in blueberries
Fig. 3. Mean (± SE) number of adult Drosophila suzukii captured in baited traps suspended in a wind chamber. Treatments with the same letter are not significantly different (P> 0.05).
Fig. 6 in Comparison of attractants, insecticides, and mass trapping for managing Drosophila suzukii (Diptera: Drosophilidae) in blueberries
Fig. 6. Mean (± SE) number of female Drosophila suzukii captured in yeast + sugar traps placed in a blueberry field in Hawthorne, Florida, USA, blocked into 4 separate treatments: border spray, mass trapping, alternative row spray, and an untreated control. Populations were monitored weekly during a 6-wk period; asterisks indicate those treatments that were significantly different (P ≤ 0.05) during a sample period.
Fig. 8 in Comparison of attractants, insecticides, and mass trapping for managing Drosophila suzukii (Diptera: Drosophilidae) in blueberries
Fig. 8. Mean (± SE) number of Drosophila suzukii reared from blueberries collected from a field in Hawthorne, Florida, USA, blocked into 4 separate treatments: border spray, mass trapping, alternative row spray, and an untreated control. Fruit was collected weekly for 6 wk. Treatments were not significantly different (P> 0.05).
Fig. 5 in Comparison of attractants, insecticides, and mass trapping for managing Drosophila suzukii (Diptera: Drosophilidae) in blueberries
Fig. 5. Mean (± SE) number of adult Drosophila suzukii captured in yeast + sugar traps placed in a blueberry field in Hawthorne, Florida, USA, blocked into 4 separate treatments: border spray, mass trapping, alternative row spray, and an untreated control. Populations monitored weekly during a 6-wk period; asterisks indicate those treatments that were significantly different (P ≤ 0.05) during a sample period.
Figs 34-40 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 34-40. Drosophila cruzloma sp. nov., holotipo ♂: 34, epandrio; 35, hipandrio y gonopodio; 36-38, edeago y paráfisis, vistas ventral, lateral y dorsal, respectivamente. Alotipo ♀: 39, oviscapto; 40, espermateca. (Escala: 0.1 mm).
Figs 22-24 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 22-24. Drosophila cumanda sp. nov., paratipos: 22, ♀, vista lateral del cuerpo; 23, ♂, vista dorsal del cuerpo (Escala: - 1 mm); 24, ♂, edeago y parafisis, vista lateral. (Escala: 0.05 mm).
Figs 8-15 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 8-15. Morfología eXterna de D. valenteae sp. nov. y D. griseolineata Duda, 1927. Drosophila valenteae sp. nov., paratipo ♀: 8, vista lateral del cuerpo; 9, tóraX, vista dorsal; 10, ala derecha; 11, abdomen, vista dorsal. Drosophila griseolineata ♀ (espÉcimen proveniente de Porto Alegre, Brasil): 12, vista lateral del cuerpo; 13, tóraX, vista dorsal; 14, ala derecha; 15, abdomen, vista dorsal. (Escala: 0.5 mm).
Figs 44-50 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 44-50. Drosophila tinalandia sp. nov., holotipo ♂: 44, epandrio; 45, hipandrio y gonopodio; 46-48, edeago y paráfisis, vistas ventral, lateral y dorsal, respectivamente; Alotipo ♀: 49, oviscapto; 50; espermateca. (Escala: 0.1 mm).
Figs 32, 33 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 32, 33. Drosophila cruzloma sp. nov., paratipos ♂: 32, vista lateral (Escala: 0.5 mm); 33, edeago y paráfisis, vista lateral. (Escala: 0.05 mm).
Figs 25-31 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 25-31. Drosophila cumanda sp. nov., holotipo ♂: 25, epandrio; 26, hipandrio y gonopodio; 27-29, edeago y paráfisis, vistas ventral, lateral y dorsal, respectivamente. Alotipo ♀: 30, oviscapto; 31, espermateca. (Escala: 0.1 mm).
Figs 1-7 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 1-7. Drosophila valenteae sp. nov., holotipo ♂: 1, epandrio; 2, hipandrio y gonopodio; 3-5, edeago y paráfisis, vistas ventral, lateral y dorsal, respectivamente. Alotipo ♀: 6, espermateca; 7, oviscapto. (Escala: 0.1 mm).
Figs 41-43 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 41-43. Drosophila tinalandia sp. nov., paratipos: 41, ♀, tóraX, vista dorsal (espÉcimen seco); 42, ♀, ala derecha (Escala: – 0.5 mm); 43, ♂, edeago y paráfisis, vista lateral. (Escala: 0.05 mm).
Figs 16-21 in Cuatro especies nuevas del género Drosophila (Diptera, Drosophilidae) en las provincias de Pichincha, Napo y Santo Domingo de los Tsáchilas, Ecuador
Figs 16-21. Genitalia de D. valenteae sp. nov. y D. griseolineata Duda, 1927. Drosophila valenteae sp. nov., paratipo ♂, edeago y paráfisis: 16, vista ventral; 17, vista lateral; 18, paratipo ♀, espermateca. Drosophila griseolineata Duda, 1927, ♂, edeago, paráfisis y gonopodio: 19, vista ventral; 20, vista lateral; 21, ♀, espermateca. (Escala: 0.05 mm).
Figure. 3 in Niche separation between the cosmopolitan species Drosophila melanogaster and the tropical Asian species Drosophila ananassae based on larval host-plant species
Figure. 3. Statistical interaction between Drosophila species and larval host plant in determining the number of male flies eclosing in the present experiment. Blue circles represent replicates for Drosophila ananassae and Drosophila melanogaster when raised on cucumberfruit (Averrhoa bilimbi). Red circles indicate replicates where D. ananassae or D. melanogaster were raised on banana (Musa sp.). The number of male flies eclosing from each replicate are presented as squareroot transformed data (variable: TFlies), since the transformed data were used in the ANOVA to determine the statistical significance of this statistical interaction. Da. = Drosophila ananassae, Dm.= Drosophila melanogaster.
Figure 2 in Niche separation between the cosmopolitan species Drosophila melanogaster and the tropical Asian species Drosophila ananassae based on larval host-plant species
Figure 2. Number of Drosophila ananassae and Drosophila melanogaster eclosing in the present experiment, pooling across fruit types. Da. = Drosophila ananassae, Dm.= Drosophila melanogaster.
Figure 1 in Niche separation between the cosmopolitan species Drosophila melanogaster and the tropical Asian species Drosophila ananassae based on larval host-plant species
Figure 1. Number of male flies eclosing from cucumberfruit (Averrhoa bilimbi) vs. banana (Musa species), pooled across Drosophila Species.
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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.