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食物网组成影响跨生态系统相互作用和补助。

Food-web composition affects cross-ecosystem interactions and subsidies.

机构信息

Departamento de Zoologia e Botânica, IBILCE, Universidade Estadual Paulista (UNESP), Rua Cristóvão Colombo, 2265, CEP 15054-000, São José do Rio Preto, São Paulo, Brazil.

出版信息

J Anim Ecol. 2010 Sep;79(5):1122-31. doi: 10.1111/j.1365-2656.2010.01716.x. Epub 2010 Jun 24.

DOI:10.1111/j.1365-2656.2010.01716.x
PMID:20584097
Abstract
  1. Ecosystems may affect each other through trophic interactions that cross ecosystem boundaries as well as via the transfer of subsidies, but these effects can vary depending on the identity of species involved in the interaction. 2. In this study, we manipulated two terrestrial bromeliad-living spider species (Aglaoctenus castaneus, Corinna gr. rubripes) that have variable hunting modes, to test their individual and combined effects on aquatic invertebrate community structure and ecosystem processes (i.e. decomposition rate and nitrogen cycling). We predicted that these terrestrial predators can affect aquatic invertebrates and nutrient dynamics within water-filled bromeliads. 3. Aglaoctenus spiders reduced the richness, abundance and biomass of aquatic insect larvae via consumptive or non-consumptive effects on ovipositing terrestrial adults, but effects of the two spider species in combination were usually the linear average of their monoculture effects. In contrast, invertebrates with entirely aquatic life cycles were unaffected or facilitated by spiders. Spiders did not affect either net detritivore biomass or the flux of detrital nitrogen to the bromeliad. Instead, Corinna spiders contributed allochthonous nitrogen to bromeliads. 4. Our results provide the novel observations that predators in one ecosystem not only directly reduce taxa whose life cycles cross-ecosystem boundaries, but also indirectly facilitate taxa whose life cycles are entirely within the second ecosystem. This compensatory response between cross-ecosystem and within-ecosystem taxa may have led to an attenuation of top-down effects across ecosystem boundaries. In addition, our results add to a growing consensus that species identity is an important determinant of community structure and ecosystem functioning. Thus, the composition of both terrestrial and aquatic food webs may affect the strength of cross-ecosystem interactions.
摘要
  1. 生态系统可以通过跨越生态系统边界的营养相互作用以及通过补贴的转移来相互影响,但这些影响可能因参与相互作用的物种的身份而异。

  2. 在这项研究中,我们操纵了两种生活在陆生凤梨中的蜘蛛物种(Aglaoctenus castaneus,Corinna gr. rubripes),它们具有不同的捕猎方式,以测试它们对水生无脊椎动物群落结构和生态系统过程(即分解速率和氮循环)的单独和综合影响。我们预测这些陆生捕食者可以影响水生无脊椎动物和充满水的凤梨中的营养动态。

  3. Aglaoctenus 蜘蛛通过对陆生成虫的消耗或非消耗性产卵来减少水生昆虫幼虫的丰富度、丰度和生物量,但两种蜘蛛物种的组合效应通常是它们单培养效应的线性平均值。相比之下,完全水生生活史的无脊椎动物不受蜘蛛影响或受到蜘蛛的促进。蜘蛛对净碎屑生物量或碎屑氮向凤梨的通量没有影响。相反,Corinna 蜘蛛向凤梨提供了外来氮。

  4. 我们的结果提供了新的观察结果,即一个生态系统中的捕食者不仅直接减少了那些生命周期跨越生态系统边界的类群,而且还间接地促进了那些生命周期完全在第二个生态系统内的类群。这种跨生态系统和生态系统内类群之间的补偿反应可能导致跨生态系统边界的自上而下的影响减弱。此外,我们的结果增加了一个共识,即物种身份是群落结构和生态系统功能的重要决定因素。因此,陆地和水生食物网的组成可能会影响跨生态系统相互作用的强度。

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