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841 results for “fruit flies”
Fig. 1 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 1. Schematic representation of the Pest Free Area (PFAs) in Mexico and in the Containment Barrier in Guatemala, with its 3 working areas: the Eradication or Low Pest Prevalence Area (LPA) (2a), the Suppression Area (2b) and the Monitoring Area (2c). The Mediterranean fruit fly pressure is from the east and the south toward the west and the north, with the leading edge of the pest population infestation located at some point within the suppression area along the 3 main infestation fronts as described in the text. The case is shown where the border between Mexico and Guatemala is the limit of the PFA; however, in years of high pest pressure the barrier was partially moved into the PFAs of Chiapas and Tabasco, while in favorable years the PFA in Guatemala grew an annual average of 20-30 km with the containment barrier being moved away from the Mexico-Guatemala border.
Fig. 2 in Exposure to tea tree oil enhances the mating success of male Mediterranean fruit flies (Diptera: Tephritidae)
Fig. 2. Number of matings (mean ± SE) obtained per replicate by wild-like medfly males exposed to TTO (treated) or not exposed (control) for 3 different post-exposure (pre-test) intervals for the treated males (exposed to 200 µL of 5% TTO on an uncovered wick for 1 h). Bar heights represent averages; whiskers represent 1 SE. Results of t-tests: 1 d: t = 4.8, P <0.001; 3 d: t = 2.4, P = 0.03; 5 d: t = 0.6, P = 0.53.
Fig. 3 in Exposure to tea tree oil enhances the mating success of male Mediterranean fruit flies (Diptera: Tephritidae)
Fig. 3. Number of matings obtained per replicate by tsl males and wild-like males where tsl males were or were not exposed to TTO and tested either 1 d (A) or 3 d (B) afer exposure. Wild-like males were not exposed to the chemical in any trial. Bar heights represent averages; whiskers represent 1 SE. Results of t-tests: (A) 1 d post-exposure interval: treated tsl males t = 1.2, P = 0.24; nonexposed tsl males t = 6.8, P <0.001; (B) 3 d post-exposure interval: treated tsl males t = 7.4, P <0.001; non-exposed tsl males t = 6.6, P <0.001.
Figure 1 from: Doorenweerd C, Leblanc L, Norrbom AL, Jose MS, Rubinoff D (2018) A global checklist of the 932 fruit fly species in the tribe Dacini (Diptera, Tephritidae). ZooKeys 730: 19-56. https://doi.org/10.3897/zookeys.730.21786
Figure 1 Accumulation of described species in Dacini through time, with publications that featured large numbers of newly described species indicated at their respective moment. The first species was described in 1790, but during the past fifty years the number of recognized [or known] species has more than doubled to reach the current 932.
Figure 4 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 4 Latency (average ± SE, in minutes) between ovipositions of three native opine parasitoids attacking non-parasitized and previously parasitized Anastrepha ludens larvae. Different capital letters indicate statistically significant difference between the bars. Different letters, indicate statistically significant difference between the bars. Different lower case letters, indicate statistically significant difference between species.
Figure 2 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 2 Ethogram of oviposition of females of Utetes anastrephae on non-parasitized larvae (a) and larvae previously parasitized by conspecifics (b) under laboratory conditions. The width of the arrow is proportional to the relative frequency of transition. The numbers associated with the arrows represent the observed frequencies of the successive behaviors of a complex sequence of behavior (proportions are indicated in parentheses).
Figure 3 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 3 Ethogram of oviposition of females of Opius hirtus on non-parasitized larvae (a) and larvae previously parasitized by conspecifics (b) under laboratory conditions. The width of the arrow is proportional to the relative frequency of transition. The numbers associated with the arrows represent the observed frequencies of the successive behaviors of a complex sequence of behavior (proportions are indicated in parentheses).
Figure 1 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 1 Ethogram of oviposition of females of Doryctobracon crawfordi on non-parasitized larvae (a) and larvae previously parasitized by conspecifics (b) under laboratory conditions. The width of the arrow is proportional to the relative frequency of transition. The numbers associated with the arrows represent the observed frequencies of the successive behaviors of a complex sequence of behavior (proportions are indicated in parentheses).
Supplementary material 2 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
: Data type: statistical data
Supplementary material 1 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
: Data type: statistical data
Figure 5 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
Figure 5 Maximum likelihood tree of COI-3P sequences of Zeugodacus madhupuri sp. nov. and its closest relatives in COI. Taxa names include UHIM 'ms' molecular voucher numbers, GenBank accessions and ISO three letter country codes. The record of Zeugodacus hengsawadae was published as Zeugodacus nr. tau in San Jose et al. (2018a). The scale bar indicates substitutions per site; values on the branches indicate ultrafast bootstrap support values and Sh-aLRT bootstrap values, respectively.
Figure 4 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
Figure 4 Bactrocera carambolae collected in Bangladesh A head B head and scutum C abdomen D wing E lateral view.
Figure 1 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
Figure 1 Distribution of Bactrocera dorsalis and B. carambolae in Asia, including the new records of B. carambolae in Bangladesh and range expansion recorded in San Jose et al. (2018b).
Figure 3 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
Figure 3 Species accumulation curves for species collected in the rural and forest sites through the whole sampling period (2013–2018) (A) and for the individually surveyed protected forest areas (B). Estimates of species numbers based on the Chao 2 estimator, with the 95% confidence interval ranges). Data used to generate these curves and estimates include two species not yet definitely identified and not included on Table 1.
Figure 8 from: Leblanc L, Hossain MA, Doorenweerd C, Khan SA, Momen M, San Jose M, Rubinoff D (2019) Six years of fruit fly surveys in Bangladesh: a new species, 33 new country records and discovery of the highly invasive Bactrocera carambolae (Diptera, Tephritidae). ZooKeys 876: 87-109. https://doi.org/10.3897/zookeys.876.38096
Figure 8 Amegilla (Zonamegilla) sp. (Hymenoptera: Apidae) collected in zingerone traps in Bangladesh. A Face B lateral view.
Figure 11 from: Leblanc L, Doorenweerd C, Jose MS, Pham HT, Rubinoff D (2018) Descriptions of four new species of Bactrocera and new country records highlight the high biodiversity of fruit flies in Vietnam (Diptera, Tephritidae, Dacinae). ZooKeys 797: 87-115. https://doi.org/10.3897/zookeys.797.29138
Figure 11 - Maximum likelihood tree based on COI sequences of B. adamantea sp. n. and several of its genetically closest congeners. Bootstrap branch supports shown for intraspecific relationships. HT = holotype.
Figure 2 from: Leblanc L, Doorenweerd C, Jose MS, Pham HT, Rubinoff D (2018) Descriptions of four new species of Bactrocera and new country records highlight the high biodiversity of fruit flies in Vietnam (Diptera, Tephritidae, Dacinae). ZooKeys 797: 87-115. https://doi.org/10.3897/zookeys.797.29138
Figure 2 - Species accumulation curves for species collected in fruit fly surveys (2015, 2017) across the entire region (A), and for the four broad surveyed locations (B).
Figure 9 from: Leblanc L, Doorenweerd C, Jose MS, Pham HT, Rubinoff D (2018) Descriptions of four new species of Bactrocera and new country records highlight the high biodiversity of fruit flies in Vietnam (Diptera, Tephritidae, Dacinae). ZooKeys 797: 87-115. https://doi.org/10.3897/zookeys.797.29138
Figure 9 - Bactrocera (Hemigymnodacus) clarifemur . A head B head and scutum C, D, E abdomen variation F wing G lateral view.
Figure 8 from: Leblanc L, Doorenweerd C, Jose MS, Pham HT, Rubinoff D (2018) Descriptions of four new species of Bactrocera and new country records highlight the high biodiversity of fruit flies in Vietnam (Diptera, Tephritidae, Dacinae). ZooKeys 797: 87-115. https://doi.org/10.3897/zookeys.797.29138
Figure 8 - Maximum likelihood trees and haplotype network based on COI (A) and EF1a (B) sequences of B. clarifemur sp. n. and several of its genetically closest neighbors. C displays a TCS haplotype network, with notches on the connections to indicate mutations, based on COI data of B. clarifemur and B. pendleburyi and shows that specimen ms6095 is relatively distantly related from all others. Bootstrap branch supports shown for intraspecific relationships. Abbreviation: HT holotype.
Figure 3 from: Leblanc L, Doorenweerd C, Jose MS, Pham HT, Rubinoff D (2018) Descriptions of four new species of Bactrocera and new country records highlight the high biodiversity of fruit flies in Vietnam (Diptera, Tephritidae, Dacinae). ZooKeys 797: 87-115. https://doi.org/10.3897/zookeys.797.29138
Figure 3 - Maximum likelihood tree based on COI sequences of B. ernesti sp. n. and several of its genetically closest neighbors, which include Bactrocera , Zeugodacus and Dacus species. Bootstrap branch supports shown for intraspecific relationships. Abbreviations: HT holotype.
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International Brain Laboratory public data
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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.