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Variations in community assemblages and trophic networks of aphids and parasitoids in protected crops

机译:受保护作物中的蚜虫和寄生虫的社区组合和营养网络的变化

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Greenhouse crops are thought to be simplified ecosystems because they often consist of monocultures that are relatively isolated from their environment. However, insect pests are still able to colonize these protected crops, which threaten their yields. Similarly, natural enemies of pests may be able to colonize greenhouses, providing a form of natural biological pest control. Protected strawberry crops are grown in several types of greenhouses that vary in their degree of openness. Crops often suffer from aphid outbreaks, which can be partly controlled by insect parasitoids immigrating from the surrounding environment. We investigated variations over space and time in both the aphid and parasitoid community diversity and species assemblages associated with protected strawberry crops. We sampled aphids and parasitoids in five regions of France in the spring and summer of two successive years. Despite the relative isolation of these protected crops, we identified a high aphid species richness in them, even at the greenhouse scale. Aphid community composition varied with spatial and temporal factors, but the species assemblages present were mostly determined by local factors. Parasitoid communities were mostly similar among the studied regions, but varied between seasons, with this temporal variation being related to changes in aphid species composition. The study of trophic interactions occurring between aphids and parasitoids allowed the most prevalent and efficient parasitoid species to be identified. The structures of food webs strongly varied in time and space, compromising any prediction of “natural” biological control. We also highlighted ecological factors that can disrupt aphid biological control, such as the occurrence of hyperparasitism or the possibility of apparent mutualism between aphid species. Finally, we showed that the degree of openness of greenhouses influenced both the aphid communities and the hyperparasitism rates in them. These results provide valuable information to improve aphid biological control in protected crops.
机译:温室作物被认为是简化的生态系统,因为它们通常由与他们的环境相对孤立的单一文献组成。然而,昆虫害虫仍然能够驯化这些受保护的作物,这威胁其产量。同样,害虫的天然敌人可能能够将温室殖民,提供一种天然生物害虫控制。受保护的草莓作物种植在几种类型的温室中,在他们的开放程度上变化。农作物经常患有蚜虫爆发,其可以部分地由移植周围环境的昆虫寄生虫控制。我们在蚜虫和寄生族群落多样性和物种组合中调查了空间和时间的变化,与受保护的草莓作物相关。在两个连续几年的春天和夏天,我们在法国的五个地区取样了蚜虫和寄生虫。尽管存在这些受保护作物的相对隔离,但我们甚至在温室等级中识别出他们的高蚜虫物种丰富性。蚜虫社区组成随空间和时间因素而变化,但目前的物种组合主要由当地因素决定。寄生虫社区在研究区域中具有多样性,但在季节之间变化,这种时间变异与蚜虫物种组成的变化有关。在蚜虫和寄生素之间发生的营养相互作用的研究允许鉴定最普遍和最有效的寄生体。食物纤维网的结构在时间和空间中强烈变化,损害了任何对“天然”生物控制的预测。我们还强调了可能破坏蚜虫生物控制的生态因素,例如蚜虫物种之间存在明显的相互作用的发生或可能性。最后,我们表明,温室的开放程度影响了蚜虫社区和他们的紫外率。这些结果提供了有价值的信息,以改善受保护作物中的蚜虫生物控制。

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