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High Redundancy as well as Complementary Prey Choice Characterize Generalist Predator Food Webs in Agroecosystems

机译:高冗余度和互补的猎物选择是农业生态系统中通体捕食者食物网的特征

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摘要

Food web structure influences ecosystem functioning and the strength and stability of associated ecosystem services. With their broad diet, generalist predators represent key nodes in the structure of many food webs and they contribute substantially to ecosystem services such as biological pest control. However, until recently it has been difficult to empirically assess food web structure with generalist predators. We utilized DNA-based molecular gut-content analyses to assess the prey use of a set of generalist invertebrate predator species common in temperate agricultural fields. We investigated the degree of specialization of predator-prey food webs at two key stages of the cropping season and analysed the link temperature of different trophic links, to identify non-random predation. We found a low level of specialization in our food webs, and identified warm and cool links which may result from active prey choice or avoidance. We also found a within-season variation in interaction strength between predators and aphid pests which differed among predator species. Our results show a high time-specific functional redundancy of the predator community, but also suggest temporally complementary prey choice due to within-season succession of some predator species.
机译:食物网结构影响生态系统的功能以及相关生态系统服务的强度和稳定性。通俗的食肉动物以其丰富的饮食构成了许多食物网结构中的关键节点,并为生态系统服务(例如生物虫害控制)做出了重要贡献。但是,直到最近,用通才捕食者来凭经验评估食物网的结构还很困难。我们利用基于DNA的分子肠道含量分析来评估在温带农业领域中常见的一组无脊椎动物捕食者的猎物使用。我们调查了作物季节两个关键阶段中捕食者-食物网络的专业化程度,并分析了不同营养环节的环节温度,从而确定了非随机捕食行为。我们发现食物网的专业化水平较低,并确定了可能由于主动选择或避免捕食而造成的温暖和凉爽的联系。我们还发现,捕食者与蚜虫之间的相互作用强度在季节内变化,这在捕食者之间有所不同。我们的结果表明,捕食者社区具有特定时间的高功能冗余性,但由于某些捕食者物种的季节内演替,也暗示了时间互补的猎物选择。

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