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Environmental stress gradients regulate the relative importance of predator density‐ and trait‐mediated indirect effects in oyster reef communities

机译:环境应力梯度调节捕食者密度和特质介导的间接影响的相对重要性牡蛎礁社区

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摘要

Predators affect community structure by influencing prey density and traits, but the importance of these effects often is difficult to predict. We measured the strength of blue crab predator effects on mud crab prey consumption of juvenile oysters across a flow gradient that inflicts both physical and sensory stress to determine how the relative importance of top predator density‐mediated indirect effects (DMIEs) and trait‐mediated indirect effects (TMIEs) change within systems. Overall, TMIEs dominated in relatively benign flow conditions where blue crab predator cues increased oyster survivorship by reducing mud crab–oyster consumption. Blue crab DMIEs became more important in high sensory stress conditions, which impaired mud crab perception of blue crab chemical cues. At high physical stress, the environment benefitted oyster survival by physically constraining mud crabs. Thus, factors that structure communities may be predicted based on an understanding of how physical and sensory performances change across environmental stress gradients.
机译:捕食者通过影响猎物密度和特征来影响社区结构,但这些效果的重要性往往难以预测。我们测量了蓝蟹捕食者对少年牡蛎的泥蟹猛禽消费的强度,这些牡蛎在流动梯度上造成了物理和感官应力,以确定顶部捕食者密度介导的间接影响(DMIE)和特质介导的间接的相对重要性如何系统内的影响(TMIES)更改。总体而言,TMIE在相对良性的流动条件下占主导地位,其中蓝蟹捕食者提示通过减少泥蟹牡蛎消费来增加牡蛎生存。蓝蟹DMIE在高感官压力条件下变得更加重要,这对蓝蟹化学提示的泥蟹感染了受损。在高度物理压力下,环境受到物理限制泥蟹的牡蛎存活。因此,基于对环境应力梯度的物理和感觉性能如何改变的理解,可以预测结构社区的因素。

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