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Prey-driven control of predator assemblages: zooplankton abundance drives aquatic beetle colonization

机译:捕食者组合的猎物控制:浮游动物丰富驱动水生甲虫殖民化

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Trophic interactions are critical determinants of community structure and ecosystem function. In freshwater habitats, top predators are traditionally viewed as drivers of ecosystem structure, shaping populations of consumers and primary producers. The temporary nature of small water bodies makes them dependent on colonization by many organisms, particularly insects that form highly diverse predator assemblages. We conducted mesocosm experiments with naturally colonizing populations of aquatic beetles to assess how prey (zooplankton) abundances influenced colonization and assemblages of natural populations of aquatic beetles. We experimentally demonstrate that zooplankton populations can be proximate regulators of predator populations and assemblages via prey-density-dependent predator recruitment. Our results provide support for the importance of prey populations in structuring predator populations and the role of habitat selection in structuring communities. We indicate that traditional views of predators as drivers of ecosystem structure in many systems may not provide a comprehensive picture, particularly in the context of highly disturbed or ephemeral habitats.
机译:营养互动是社区结构和生态系统功能的关键决定因素。在淡水栖息地,顶级掠夺者传统上被视为生态系统结构的驱动因素,塑造消费者和初级生产商的培养。小水体的临时性质使它们依赖于许多生物,特别是昆虫的殖民化,这些昆虫形成高度多样化的捕食者组合。我们对水平甲虫的天然殖民群体进行了Mesocosm实验,以评估猎物(Zooplankton)的丰富如何影响水生甲虫的自然群体的殖民化和组装。我们通过实验证明Zooplankton群体可以通过牺牲猎物密度依赖于捕食者招募来成为捕食者群体和组装的临床调节因素。我们的成果提供了对猎物群体在构建掠夺者群体中的重要性以及栖息地选择在构建社区中的作用。我们表明,许多系统中,捕食者的传统观点作为生态系统结构的驱动程序可能无法提供全面的画面,特别是在高度受到干扰或短暂的栖息地的背景下。

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