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Multiscale Determinants Drive Parasitization of Drosophilidae by Hymenopteran Parasitoids in Agricultural Landscapes

机译:多尺度行列式驱动果蝇的寄生虫在农业景观中的果蝇寄生。

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摘要

(1) The management of agricultural landscapes for pest suppression requires a thorough understanding of multiple determinants controlling their presence. We investigated the ecological preferences of indigenous parasitoids and their drosophilid hosts to understand the role of native parasitoids as biological control agents of the invasive frugivorous . (2) Using data from an extensive field survey across different habitat types we analyzed the influence of abiotic and biotic factors on parasitoid and drosophilid communities at multiscale levels. (3) Eight parasitoid and 27 drosophilid species were identified. Thirty-four percent variation in drosophilid communities was explained by factors at the landscape scale, and 52% of significant variation of parasitoids by local distribution of three drosophilid species, mainly collected in woodland. Parasitoid communities were significantly influenced by microhabitat type (ground versus canopy) rather than habitat type. All parasitoids except preferred the ground microhabitat. All parasitoids, with the exception of and , displayed significant preferences among the drosophilid species used in the baited traps. (4) Since they can tolerate a broad range of habitat factors, altogether pupal parasitoids investigated in this study could play a role in biological control programs to suppress , but non-target effects have to be regarded.
机译:(1)为了抑制害虫而对农业景观进行管理需要对控制其存在的多种决定因素有透彻的了解。我们调查了本地寄生虫及其嗜果寄主的生态偏好,以了解本地寄生虫作为入侵食虫的生物控制剂的作用。 (2)使用来自不同栖息地类型的广泛田野调查数据,我们分析了非生物和生物因素在多尺度水平上对寄生性和果蝇性群落的影响。 (3)鉴定出8种寄生虫和27种果蝇。果蝇群落中有34%的变异是由景观尺度上的因素所解释的,而寄生虫的显着变异的52%是由3种主要在林地中收集到的果蝇物种的局部分布所解释的。拟寄生物群落受微生境类型(地面与林冠)的影响较大,而不是生境类型的影响。除寄生虫外,所有寄生虫都喜欢地面微生境。除和以外的所有寄生虫在诱饵诱捕器中使用的果蝇种类中都表现出明显的偏爱。 (4)由于它们能够耐受广泛的栖息地因素,因此本研究中研究的para类寄生虫可能在生物控制程序中起到抑制作用,但必须考虑非目标作用。

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