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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >New multidimensional functional diversity indices for a multifaceted framework in functional ecology
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New multidimensional functional diversity indices for a multifaceted framework in functional ecology

机译:功能生态学多元化框架的新多维功能多样性指数

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Functional diversity is increasingly identified as an important driver of ecosystem functioning. Various indices have been proposed to measure the functional diversity of a community, but there is still no consensus on which are most suitable. Indeed, none of the existing indices meets all the criteria required for general use. The main criteria are that they must be designed to deal with several traits, take into account abundances, and measure all the facets of functional diversity. Here we propose three indices to quantify each facet of functional diversity for a community with species distributed in a multidimensional functional space: functional richness (volume of the functional space occupied by the community), functional evenness (regularity of the distribution of abundance in this volume), and functional divergence (divergence in the distribution of abundance in this volume). Functional richness is estimated using the existing convex hull volume index. The new functional evenness index is based on the minimum spanning tree which links all the species in the multidimensional functional space. Then this new index quantifies the regularity with which species abundances are distributed along the spanning tree. Functional divergence is measured using a novel index which quantifies how species diverge in their distances (weighted by their abundance) from the center of gravity in the functional space. We show that none of the indices meets all the criteria required for a functional diversity index, but instead we show that the set of three complementary indices meets these criteria. Through simulations of artificial data sets, we demonstrate that functional divergence and functional evenness are independent of species richness and that the three functional diversity indices are independent of each other. Overall, our study suggests that decomposition of functional diversity into its three primary components provides a meaningful framework for its quanti. cation and for the classification of existing functional diversity indices. This decomposition has the potential to shed light on the role of biodiversity on ecosystem functioning and on the influence of biotic and abiotic filters on the structure of species communities. Finally, we propose a general framework for applying these three functional diversity indices.
机译:功能多样性越来越被认为是生态系统功能的重要驱动力。已经提出了各种指标来衡量社区的功能多样性,但是对于哪种指标最合适尚无共识。的确,现有索引均不符合一般使用所需的所有标准。主要标准是必须将其设计为应对多个特征,考虑丰富性并衡量功能多样性的所有方面。在这里,我们提出了三个指标来量化具有在多维功能空间中分布的物种的社区的功能多样性的各个方面:功能丰富度(该社区所占据的功能空间的体积),功能均匀性(该体积中的丰度分布的规律性) )和功能差异(此体积中的丰度分布差异)。使用现有的凸包体积指数估算功能丰富度。新的功能均匀性指数基于最小生成树,该最小生成树将多维功能空间中的所有物种链接在一起。然后,该新索引量化物种丰富度沿生成树分布的规律性。使用一种新的指数来衡量功能差异,该指数可以量化物种在功能空间中距重心的距离(以其丰度加权)的差异。我们显示没有一个索引满足功能多样性索引所需的所有条件,但是相反,我们显示了三个互补索引的集合都满足了这些条件。通过模拟人工数据集,我们证明了功能差异和功能均匀性与物种丰富度无关,并且三个功能多样性指数彼此独立。总体而言,我们的研究表明,功能多样性分解为其三个主要组成部分为其量化提供了有意义的框架。阳离子和现有功能多样性指数的分类。这种分解有可能阐明生物多样性对生态系统功能的作用以及生物和非生物过滤器对物种群落结构的影响。最后,我们提出了应用这三个功能多样性指数的一般框架。

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