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Per capita interactions and stress tolerance drive stress-induced changes in biodiversity effects on ecosystem functions

机译:人均互动和压力承受力推动了由压力引起的生物多样性变化对生态系统功能的影响

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摘要

Environmental stress changes the relationship between biodiversity and ecosystem functions, but the underlying mechanisms are poorly understood. Because species interactions shape biodiversity–ecosystem functioning relationships, changes in per capita interactions under stress (as predicted by the stress gradient hypothesis) can be an important driver of stress-induced changes in these relationships. To test this hypothesis, we measure productivity in microalgae communities along a diversity and herbicide gradient. On the basis of additive partitioning and a mechanistic community model, we demonstrate that changes in per capita interactions do not explain effects of herbicide stress on the biodiversity–productivity relationship. Instead, assuming that the per capita interactions remain unaffected by stress, causing species densities to only change through differences in stress tolerance, suffices to predict the stress-induced changes in the biodiversity–productivity relationship and community composition. We discuss how our findings set the stage for developing theory on how environmental stress changes biodiversity effects on ecosystem functions.
机译:环境压力改变了生物多样性与生态系统功能之间的关系,但是人们对潜在的机制知之甚少。由于物种相互作用影响了生物多样性与生态系统的功能关系,因此在压力下人均相互作用的变化(如应力梯度假设所预测)可能是这些关系中压力引起的变化的重要驱动力。为了检验该假设,我们测量了沿多样性和除草剂梯度的微藻群落的生产力。在加性分配和机械群落模型的基础上,我们证明了人均相互作用的变化不能解释除草剂胁迫对生物多样性-生产力关系的影响。取而代之的是,假设人均相互作用不受压力影响,仅通过胁迫耐受性的差异导致物种密度发生变化,就足以预测由压力引起的生物多样性-生产力关系和社区组成的变化。我们讨论了我们的发现如何为发展有关环境压力如何改变生物多样性对生态系统功能的影响的理论奠定基础。

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