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Compensatory responses can alter the form of the biodiversity–function relation curve

机译:补偿性反应可以改变生物多样性-功能关系曲线的形式

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摘要

There is now strong evidence that ecosystem properties are influenced by alterations in biodiversity. The consensus that has emerged from over two decades of research is that the form of the biodiversity–functioning relationship follows a saturating curve. However, the foundation from which these conclusions are drawn mostly stems from empirical investigations that have not accounted for post-extinction changes in community composition and structure, or how surviving species respond to new circumstances and modify their contribution to functioning. Here, we use marine sediment-dwelling invertebrate communities to experimentally assess whether post-extinction compensatory mechanisms (simulated by increasing species biomass) have the potential to alter biodiversity–ecosystem function relations. Consistent with recent numerical simulations, we find that the form of the biodiversity–function curve is dependent on whether or not compensatory responses are present, the cause and extent of extinction, and species density. When species losses are combined with the compensatory responses of surviving species, both community composition, dominance structure, and the pool and relative expression of functionally important traits change and affect species interactions and behaviour. These observations emphasize the importance of post-extinction community composition in determining the stability of ecosystem functioning following extinction. Our results caution against the use of the generalized biodiversity–function curve when generating probabilistic estimates of post-extinction ecosystem properties for practical application.
机译:现在有强有力的证据表明,生态系统特性受到生物多样性变化的影响。经过二十多年的研究,人们达成的共识是,生物多样性与功能之间的关系形式呈饱和曲线。但是,得出这些结论的基础主要是基于经验研究,这些研究没有考虑灭绝后群落组成和结构的变化,也没有考虑到生存物种如何应对新情况并改变其对功能的贡献。在这里,我们使用海洋沉积物无脊椎动物群落来实验评估灭绝后的补偿机制(通过增加物种生物量来模拟)是否具有改变生物多样性与生态系统功能关系的潜力。与最近的数值模拟一致,我们发现生物多样性-功能曲线的形式取决于是否存在补偿性反应,灭绝的原因和程度以及物种密度。当物种损失与存活物种的补偿反应相结合时,群落组成,优势结构以及功能重要性状的集合和相对表达都会改变并影响物种的相互作用和行为。这些观察结果强调了灭绝后群落组成对确定灭绝后生态系统功能稳定性的重要性。我们的结果告诫在生成灭绝后生态系统特性的概率估计以供实际应用时,不要使用广义的生物多样性-功能曲线。

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