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Food-web stability signals critical transitions in temperate shallow lakes

机译:食物网的稳定性标志着温带浅湖的关键转变

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摘要

A principal aim of ecologists is to identify critical levels of environmental change beyond which ecosystems undergo radical shifts in their functioning. Both food-web theory and alternative stable states theory provide fundamental clues to mechanisms conferring stability to natural systems. Yet, it is unclear how the concept of food-web stability is associated with the resilience of ecosystems susceptible to regime change. Here, we use a combination of food web and ecosystem modelling to show that impending catastrophic shifts in shallow lakes are preceded by a destabilizing reorganization of interaction strengths in the aquatic food web. Analysis of the intricate web of trophic interactions reveals that only few key interactions, involving zooplankton, diatoms and detritus, dictate the deterioration of food-web stability. Our study exposes a tight link between food-web dynamics and the dynamics of the whole ecosystem, implying that trophic organization may serve as an empirical indicator of ecosystem resilience.
机译:生态学家的主要目的是确定环境变化的关键水平,超过该水平生态系统的功能将发生根本性变化。食物网理论和替代稳态理论都为赋予自然系统稳定性的机制提供了基本线索。但是,尚不清楚食物网稳定性的概念如何与易受政权变化影响的生态系统的弹性相关联。在这里,我们结合使用食物网和生态系统模型来表明,在浅水湖泊中即将发生的灾难性变化之前,水生食物网中相互作用强度的不稳定重新组织。对复杂的营养相互作用网的分析表明,只有很少的关键相互作用(包括浮游动物,硅藻和碎屑)决定了食物网稳定性的恶化。我们的研究揭示了食物网动态与整个生态系统动态之间的紧密联系,这表明营养组织可以作为生态系统复原力的经验指标。

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