首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Indirect ecological effects interact with community genetic effects in a host - parasite system and dramatically reduce parasite burden
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Indirect ecological effects interact with community genetic effects in a host - parasite system and dramatically reduce parasite burden

机译:间接生态效应与寄生虫系统中的群落遗传效应相互作用,大大减少了寄生虫负担

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Community genetic (CG) effects and ecological factors create a complex set of interactions that are key drivers of evolutionary dynamics in ecological systems. To date, most studies investigating trait variation have focused on either effects of intraspecific genetic variation or on genotype by environment (GxE) interactions in isolation. Poorly investigated but very important are the interactions between CGs and indirect ecological effects (IEEs) that are caused by plant-soil interactions. Here, we tested how CGs in a cabbage host and its aphid parasite depended on the ecological conditions under which the host was grown. We established microcosms of different cabbage cultivars and aphid genotypes on soils inoculated with samples of other soils previously trained with onion. We hypothesized that such IEEs will have significantly different outcomes for ecosystems than predicted from simpler CG or GxE studies. Our analysis demonstrated a large IEE that differed by context and aphid genotype causing reduced parasite population sizes by up to 900. The IEE is induced by insect-repellent properties and the micro'time of the onion. Our results highlight the importance of interacting IEEs and CGs for ecosystems dynamics showing that IEEs offer sustainable solutions by dramatically reducing parasite burden on cash crops.
机译:社区遗传(CG)效应和生态因素创造了一种复杂的相互作用,是生态系统中进化动态的关键驱动因素。迄今为止,研究特征变异的大多数研究都集中在分离中含有环境(GXE)相互作用的术遗传变异或基因型的任一效应。调查差但非常重要的是由植物 - 土壤相互作用引起的CGS和间接生态效应(IEE)之间的相互作用。在这里,我们测试了白菜宿主中CG的CG和其蚜虫寄生虫依赖于宿主生长的生态条件。我们在接种以前培训的洋葱培训的其他土壤样品,在土壤中建立了不同卷心菜品种和蚜虫基因型的微观形式。我们假设这种IEE在生态系统中的结果显着不同,而不是从简单的CG或GXE研究预测。我们的分析显示了一种大型的IEE,其不同的上下文和蚜虫基因型导致寄生虫种群尺寸减少到900.因昆虫防护性质和洋葱的微观次数诱导。我们的结果突出了互动IEE和CGS对生态系统的动态的重要性,显示IEE通过大大减少现金作物的寄生虫负担来提供可持续的解决方案。

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