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包括功能多样性中的种内变异性。

Including intraspecific variability in functional diversity.

作者信息

Cianciaruso M V, Batalha M A, Gaston K J, Petchey O L

机构信息

Department of Botany, Federal University of São Carlos, P.O. Box 676, 13565-905 São Carlos, SP, Brazil.

出版信息

Ecology. 2009 Jan;90(1):81-9. doi: 10.1890/07-1864.1.

Abstract

Linking species and ecosystems often relies on approaches that consider how the traits exhibited by species affect ecosystem processes. One method is to estimate functional diversity (FD) based on the dispersion of species in functional trait space. Individuals within a species also differ, however, and an unresolved challenge is how to include such intraspecific variability in a measure of functional diversity. Our solution is to extend an existing measure to variation among individuals within species. Here, simulations demonstrate how the new measure behaves relative to one that does not include individual variation. Individual-level FD was less well associated with species richness than species-level FD in a single trait dimension, because species differed in their intraspecific variation. However, in multiple trait dimensions, there was a strong association between individual- and species-level FD and richness, because many traits result in a tight relationship between functional diversity and species richness. The correlation between the two FD measures weakened as the amount of intraspecific variability increased. Analyzing natural plant communities we found no relationship between species richness and functional diversity. In these analyses, we did not have to specify the source of intraspecific variation. In fact, the variation was only among individuals. The measure can, however, include differences in the amount of intraspecific variation at different sites, as we demonstrate. Including intraspecific variation should allow a more complete understanding of the processes that link individuals and ecosystems and provide better predictions about the consequences of extinctions for ecosystem processes.

摘要

将物种与生态系统联系起来通常依赖于考虑物种所表现出的性状如何影响生态系统过程的方法。一种方法是基于物种在功能性状空间中的离散程度来估计功能多样性(FD)。然而,同一物种内的个体也存在差异,一个尚未解决的挑战是如何在功能多样性的度量中纳入这种种内变异性。我们的解决方案是将现有的一种度量扩展到物种内个体间的变异。在此,模拟展示了新度量相对于不包括个体变异的度量的表现。在单一性状维度中,个体水平的FD与物种丰富度的关联不如物种水平的FD紧密,因为物种在其种内变异方面存在差异。然而,在多个性状维度中,个体水平和物种水平的FD与丰富度之间存在很强的关联,因为许多性状导致功能多样性与物种丰富度之间存在紧密关系。随着种内变异性的增加,两种FD度量之间的相关性减弱。通过分析天然植物群落,我们发现物种丰富度与功能多样性之间没有关系。在这些分析中,我们不必指定种内变异的来源。事实上,变异仅存在于个体之间。然而,正如我们所展示的,该度量可以包括不同地点种内变异量的差异。纳入种内变异应该能够更全面地理解将个体与生态系统联系起来的过程,并对物种灭绝给生态系统过程带来的后果提供更好的预测。

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