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Predator size‐structure and species identity determine cascading effects in a coastal ecosystem

机译:捕食者的大小结构和物种特性决定了沿海生态系统的级联效应

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Cascading consequences of predator extinctions are well documented, but impacts of perturbations to predator size‐structure and how these vary across species remain unclear. Body size is hypothesized to be a key trait governing individual predators' impact on ecosystems. Therefore, shifts in predator size‐structure should trigger ecosystem ramifications which are consistent across functionally similar species. Using a US salt marsh as a model system, we tested this hypothesis by manipulating size class (small, medium, and large) and size diversity (combination of all three size classes) within two closely related and functionally similar predatory crab species over 4?months. Across treatments, predators suppressed densities of a dominant grazer and an ecosystem engineer, enhanced plant biomass, and altered sediment properties (redox potential and saturation). Over the metabolically equivalent experimental predator treatments, small size class predators had stronger average impacts on response variables, and size class interacted with predator species identity to drive engineer suppression. Within both predator species, size diversity increased cannibalism and slightly weakened the average impact. These results show that predator impacts in a salt marsh ecosystem are determined by both size class and size diversity; they also highlight that size class can have species‐dependent and response‐dependent effects, underlining the challenge of generalizing trait effects.
机译:捕食者灭绝的级联后果已得到充分记录,但扰动对捕食者大小结构的影响以及这些变化在物种间的变化尚不清楚。据推测,体型是控制个体捕食者对生态系统影响的关键特征。因此,捕食者大小结构的变化应触发生态系统的后果,这在功能相似的物种之间是一致的。我们使用美国盐沼作为模型系统,通过在4个互不相关且功能相似的掠食性蟹类物种中操纵大小类别(小,中和大)和大小多样性(所有三个大小类别的组合)来检验该假设。几个月。在各种处理中,捕食者抑制了主要食草者和生态系统工程师的密度,增强了植物的生物量,并改变了沉积物的性质(氧化还原电位和饱和度)。在代谢等效的实验性捕食者治疗中,小规模类别的捕食者对响应变量具有更强的平均影响,并且大小类别与捕食者物种身份相互作用以驱动工程师的压制。在两个捕食物种中,大小多样性增加了自相残杀的可能性,并略微减弱了平均影响。这些结果表明,盐沼生态系统中的捕食者影响取决于大小类别和大小多样性。他们还强调,体型可能具有物种依赖性和响应依赖性的影响,突显了普遍性状影响的挑战。

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