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Trait variation across biological scales shapes community structure and ecosystem function

机译:生物尺度的特质变异形状群落结构和生态系统功能

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摘要

Trait variation underlies our understanding of the patterns and importance of biodiversity, yet we have a poor understanding of how variation at different levels of biological organization structures communities and ecosystems. Here, we use a mesocosm experiment to test for the effects of a larval dragonfly functional trait on community and ecosystem dynamics by creating artificial populations to mirror within- and between-population trait variation observed in our study area. Specifically, we manipulate variation in activity rate, a key functional trait shaping food webs, across three levels of biological organization: within-populations (differences in trait variation in a population), among-populations (differences in population mean trait values), and among-species (species-level differences of co-occurring dragonflies). We show that differences in activity rate alter prey communities, trophic cascades, and multiple ecosystem processes. However, trait variation among populations had much larger effects than differences between co-occurring species or even the presence of a predator, whereas within-population variation had a relatively minor impact. Interestingly, combined with earlier work in the same system, our study suggests that the relative importance of species vs. individual level differences for ecosystem functioning will depend on the spatial scale considered. Ecological processes, including biodiversity-ecosystem-functioning relationships, cannot be understood without accounting for trait variation across biological scales of organization, including at fine scales.
机译:特质变异是我们对生物多样性的模式和重要性的理解,了解对不同水平的生物组织结构社区和生态系统的变化有何了解。在这里,我们使用Mesocosm实验来测试幼虫蜻蜓功能性质对社区和生态系统动态的影响,通过创建人工人群来镜像在我们的研究区中观察到的人口之间的特征变异。具体而言,我们操纵活动率的变化,跨三个水平的生物组织,一种关键功能性状塑造食物网:群体内(人群特质变异的差异),群体(人口平均特征价值的差异)和在物种中(共同发生蜻蜓的物种级别差异)。我们展示了活动率的差异改变了猎物社区,繁殖级联和多个生态系统过程。然而,群体之间的特质变异具有比共发生物种或甚至捕食者的存在之间的差异更大的效果,而在群体内变异有相对轻微的影响。有趣的是,与先前的工作相结合在同一系统中,我们的研究表明,物种与生态系统运作的个人水平差异的相对重要性将取决于所考虑的空间规模。在没有核算组织生物尺度的特质变异

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