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The influence of balanced and imbalanced resource supply on biodiversity–functioning relationship across ecosystems

机译:资源平衡和不平衡对生态系统间生物多样性与功能关系的影响

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摘要

Numerous studies show that increasing species richness leads to higher ecosystem productivity. This effect is often attributed to more efficient portioning of multiple resources in communities with higher numbers of competing species, indicating the role of resource supply and stoichiometry for biodiversity–ecosystem functioning relationships. Here, we merged theory on ecological stoichiometry with a framework of biodiversity–ecosystem functioning to understand how resource use transfers into primary production. We applied a structural equation model to define patterns of diversity–productivity relationships with respect to available resources. Meta-analysis was used to summarize the findings across ecosystem types ranging from aquatic ecosystems to grasslands and forests. As hypothesized, resource supply increased realized productivity and richness, but we found significant differences between ecosystems and study types. Increased richness was associated with increased productivity, although this effect was not seen in experiments. More even communities had lower productivity, indicating that biomass production is often maintained by a few dominant species, and reduced dominance generally reduced ecosystem productivity. This synthesis, which integrates observational and experimental studies in a variety of ecosystems and geographical regions, exposes common patterns and differences in biodiversity–functioning relationships, and increases the mechanistic understanding of changes in ecosystems productivity.
机译:许多研究表明,物种丰富度的提高导致生态系统生产力的提高。这种影响通常归因于具有更多竞争物种的社区中多种资源的更有效分配,表明资源供应和化学计量对生物多样性-生态系统功能关系的作用。在这里,我们将生态化学计量学理论与生物多样性-生态系统的框架结合起来,以了解资源利用如何转移到初级生产中。我们使用结构方程模型来定义相对于可用资源的多样性-生产率关系的模式。荟萃分析用于总结从水生生态系统到草地和森林的各种生态系统类型的发现。如假设的那样,资源供应增加了已实现的生产力和丰富度,但我们发现生态系统和研究类型之间存在显着差异。丰富度的提高与生产率的提高有关,尽管这种效果在实验中未见。甚至更多社区的生产力较低,这表明生物量生产通常由少数优势物种维持,而优势度的降低通常会降低生态系统的生产力。这种综合方法将对各种生态系统和地理区域的观察和实验研究进行了整合,揭示了生物多样性与功能关系中的常见模式和差异,并增加了对生态系统生产力变化的机械理解。

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