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Variable direct and indirect effects of a habitat-modifying invasive species on mortality of native fauna

机译:改变栖息地的入侵物种对本地动物死亡率的直接和间接影响

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Habitat-modifying invasive species can influence rates of predation on native prey either directly by providing protective structure or indirectly by modifying traits of prey species responding to the habitat. The alga Caulerpa taxifolia is one of the most successful invasive species of shallow-water marine systems globally, often provisioning habitat in areas previously lacking in vegetated structure. We experimentally evaluated the direct effect of Caulerpa to provide refuge for the native clam Anadara trapezia and how this balances with its influence on two trait-mediated indirect interactions that may increase Anadara's susceptibility to predators. Specifically, Caulerpa's alteration of physical and chemical properties of the surrounding water and sediment deteriorate Anadara's condition and predator resistance properties and also cause Anadara, though normally buried, to project from beneath the sediment, exposing it to predators. Our results show that Anadara are somewhat (but not consistently) protected from predators by living among Caulerpa. Shallow burial depth did not counteract this protective effect. However at times of year when predator activity diminishes and conducive environmental conditions develop, negative effects of Caulerpa habitat such as hypoxia and lowered flow may dominate. Under such situations, poor clam condition accentuates Anadara's susceptibility to mortality. Ultimately, a slight and inconsistent positive effect of Caulerpa to protect Anadara from predators is exceeded by the strong negative effect of Caulerpa on clam mortality, which is heightened by clams' weakened condition produced by chronic exposure to Caulerpa. Our results show that invasive habitat-modifying species can affect mortality of native species not simply through obvious positive direct effects of their protective structure, but indirectly through contrasting negative modification of the traits of prey species responding to the habitat.
机译:改变栖息地的入侵物种可以通过提供保护性结构直接改变本地猎物的捕食率,或者通过改变对栖息地的捕食物种的性状间接影响捕食率。藻类Caulerpa的叶植物是全球浅水海洋系统最成功的入侵物种之一,通常在以前缺乏植被的地区提供栖息地。我们通过实验评估了Caulerpa为本地蛤An Anadara斜方菌提供庇护的直接作用,以及这如何平衡其对两种性状介导的间接相互作用的影响,这可能会增加Anadara对捕食者的敏感性。具体而言,考拉帕对周围水和沉积物的物理和化学性质的改变使Anadara的状况和对捕食者的抵抗性恶化,并且还使Anadara(尽管通常被掩埋)从沉积物下方突出,使其暴露于食肉动物。我们的研究结果表明,安纳达拉人通过生活在卡勒帕之中而受到某种(但并非始终如一)的保护,免受掠食者的袭击。浅埋深度并不能抵消这种保护作用。但是,在每年捕食者活动减少和有利的环境条件发展的时候,Caulerpa生境的负面影响(如缺氧和流量降低)可能占主导。在这种情况下,蛤poor状况较差会加剧Anadara的死亡率。最终,Caulerpa对蛤仔死亡率的强烈负面影响超出了Caulerpa保护Anadara免受掠食者的轻微和不一致的积极作用,而慢性暴露于Caulerpa导致的蛤s弱化状况加剧了Caulerpa对蛤类死亡率的强烈负面影响。我们的研究结果表明,入侵栖息地修饰物种不仅可以通过其保护结构的明显正向直接影响,而且可以通过对响应栖息地的猎物物种性状进行负向修饰而间接影响本地物种的死亡率。

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