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Trophic complementarity drives the biodiversity-ecosystem functioning relationship in food webs

机译:营养互补性推动食物网中生物多样性与生态系统的功能关系

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The biodiversity-ecosystem functioning (BEF) relationship is central in community ecology. Its drivers in competitive systems (sampling effect and functional complementarity) are intuitive and elegant, but we lack an integrative understanding of these drivers in complex ecosystems. Because networks encompass two key components of the BEF relationship (species richness and biomass flow), they provide a key to identify these drivers, assuming that we have a meaningful measure of functional complementarity. In a network, diversity can be defined by species richness, the number of trophic levels, but perhaps more importantly, the diversity of interactions. In this paper, we define the concept of trophic complementarity (TC), which emerges through exploitative and apparent competition processes, and study its contribution to ecosystem functioning. Using a model of trophic community dynamics, we show that TC predicts various measures of ecosystem functioning, and generate a range of testable predictions. We find that, in addition to the number of species, the structure of their interactions needs to be accounted for to predict ecosystem productivity.
机译:生物多样性-生态系统功能(BEF)关系在社区生态中至关重要。它在竞争系统中的驱动力(采样效果和功能互补)是直观而优雅的,但我们对复杂生态系统中的这些驱动力缺乏全面的了解。因为网络包含了BEF关系的两个关键组成部分(物种丰富度和生物量流量),所以假设我们对功能互补性有一个有意义的衡量标准,它们就为识别这些驱动因素提供了关键。在网络中,多样性可以通过物种丰富度,营养水平的数量来定义,但更重要的是,可以通过交互作用的多样性来定义。在本文中,我们定义了营养互补性(TC)的概念,它通过开发性竞争和表面竞争过程出现,并研究其对生态系统功能的贡献。使用营养社区动力学模型,我们表明TC可以预测生态系统功能的各种度量,并生成一系列可检验的预测。我们发现,除了物种数量之外,还需要考虑它们相互作用的结构以预测生态系统生产力。

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