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Prior adaptation of parasitoids improves biological control of symbiont‐protected pests

机译:寄生素的先前适应改善了抗杉木的生物控制

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摘要

There is increasing demand for sustainable pest management to reduce harmful effects of pesticides on the environment and human health. For pest aphids, biological control with parasitoid wasps provides a welcome alternative, particularly in greenhouses. However, aphids are frequently infected with the heritable bacterial endosymbiont , which increases resistance to parasitoids and thereby hampers biological control. Using the black bean aphid ( ) and its main parasitoid , we tested whether prior adaptation of parasitoids can improve the control of symbiont‐protected pests. We had parasitoid lines adapted to two different strains of by experimental evolution, as well as parasitoids evolved on ‐free aphids. We compared their ability to control caged aphid populations comprising 60% unprotected and 40% ‐protected aphids, with both strains present in the populations. Parasitoids that were not adapted to had virtually no effect on aphid population dynamics compared to parasitoid‐free controls, but one of the adapted lines and a mixture of both adapted lines controlled aphids successfully, strongly benefitting plant growth. Selection by parasitoids altered aphid population composition in a very specific manner. Aphid populations became dominated by ‐protected aphids in the presence of parasitoids, and each adapted parasitoid line selected for the strain it was not adapted to. This study shows, for the first time, that prior adaptation of parasitoids improves biological control of symbiont‐protected pests, but the high specificity of parasitoid counter‐resistance may represent a challenge for its implementation.
机译:可持续害虫管理日益增长的需求,以减少农药对环境和人类健康的有害影响。对于害虫蚜虫,用寄生虫黄蜂的生物控制提供了一个受欢迎的替代品,特别是在温室中。然而,蚜虫经常感染遗传细菌indosymbiont,这增加了对寄生虫的抗性,从而妨碍了生物控制。使用黑豆蚜虫()及其主要寄生虫,我们测试了寄生素的先前适应是否可以改善对抗的害虫的控制。我们的寄生线适应两种不同的实验进化的不同菌株,以及在 - 免疫蚜虫上演化的寄生虫。比较他们控制包含60%无保护和40%受精蚜虫的持蚜虫群体的能力,其中包括人口中的两种菌株。与寄生虫对照组相比,不适应对蚜虫种群动态几乎没有影响的寄生脂肪酸,而是一种适应的线和两种适应的线路控制蚜虫的混合物成功,植物生长的适应性群体。寄生素以非常具体的方式改变蚜虫种群组成。蚜虫种群在寄生囊性存在下受到保护的蚜虫的主导,并且每个适应的腺度线选择它不适应。本研究表明,首次显示寄生素的适应性改善了对共生保护的害虫的生物控制,但寄生抗原的高特异性可能代表其实施的挑战。

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