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Ability of Muscidifurax raptorellus and Other Parasitoids and Predators to Control Drosophila suzukii Populations in Raspberries in the Laboratory

机译:ratporellus的能力和其他寄生虫和捕食者控制覆盆子在实验室中的覆盆子中的果汁植物

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Drosophila suzukii is an invasive pest and economic threat to berry crops in Europe and the Americas. Current methods of control of this pest rely primarily on frequent applications of insecticides; therefore, there is a need for alternative control methods to reduce insecticide reliance. In this study, we evaluated the biological control potential of three parasitoid wasps: Diglyphus isaea , Muscidifurax raptorellus and Pachycrepoideus vindemmiae , and four predators: Chrysoperla carnea , Dicyphus hesperus , Orius insidiosus and Podisus maculiventris . Experiments were conducted for 15 days under controlled conditions in experimental arenas with D. suzukii females and raspberries, allowing for all life stages of D. suzukii to be available to natural enemies. Results showed the first evidence of M. raptorellus ’s ability to parasitize D. suzukii , resulting in a 40% reduction. Orius insidiosus , P. vindemmiae and C. carnea were also efficient, reducing D. suzukii numbers by 49%, 43% and 32%, respectively. Predator preferences for each D. suzukii life stage were assessed. The clutch size, sex ratio and adult size variability of D. suzukii pupal parasitoids were also evaluated. This study expands the list of species that can effectively parasitize D. suzukii and provides new insights into the biological responses of M. raptorellus to D. suzukii pupae.
机译:德科咽铃木对欧洲和美洲的浆果作物来说是一种侵袭性的害虫和经济威胁。目前对这种害虫的控制方法主要依赖于杀虫剂的频繁应用;因此,需要替代控制方法以降低杀虫剂依赖性。在这项研究中,我们评估了三种寄生虫黄蜂的生物控制潜力:Diglyphus Isaea,Muscidurax Raptorellus和Pachycrepoideus Vindemmiae和四个捕食者:Chrysoperla Carnea,Diyphus Hesperus,Orius Insidiosus和Podisus maculiventris。实验在实验群体的受控条件下进行了15天,与D. Suzukii女性和覆盆子,允许D. Suzukii的所有生命阶段可供自然敌人。结果表明,急性急动舒舒普利能力的第一个证据表明,铃木才能减少40%。 orius Insidiosus,P.Vindemmiae和C.Carnea也有效,将D. Suzukii数减少49%,43%和32%。评估每个D.铃木寿命的捕食者偏好。还评估了D.Suzukii蛹寄生虫的离合器尺寸,性别比和成人尺寸变异性。本研究扩大了可以有效地寄生D. Suzukii的物种列表,并为铃木蛹M.Raptorellus的生物反应提供了新的见解。

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