Functional and phylogenetic diversity as predictors of biodiversity–ecosystem-function relationships

生物多样性 系统发育多样性 生物 特质 生态学 系统发育树 生态系统 航程(航空) 生物量(生态学) 系统发育学 物种多样性 生物化学 材料科学 计算机科学 复合材料 基因 程序设计语言
作者
Dan F. B. Flynn,Nicholas Mirotchnick,Meha Jain,Matthew I. Palmer,Shahid Naeem
出处
期刊:Ecology [Wiley]
卷期号:92 (8): 1573-1581 被引量:872
标识
DOI:10.1890/10-1245.1
摘要

How closely does variability in ecologically important traits reflect evolutionary divergence? The use of phylogenetic diversity (PD) to predict biodiversity effects on ecosystem functioning, and more generally the use of phylogenetic information in community ecology, depends in part on the answer to this question. However, comparisons of the predictive power of phylogenetic diversity and functional diversity (FD) have not been conducted across a range of experiments. To address how phylogenetic diversity and functional trait variation control biodiversity effects on biomass production, we summarized the results of 29 grassland plant experiments where both the phylogeny of plant species used in the experiments is well described and where extensive trait data are available. Functional trait variation was only partially related to phylogenetic distances between species, and the resulting FD values therefore correlate only partially with PD. Despite these differences, FD and PD predicted biodiversity effects across all experiments with similar strength, including in subsets that excluded plots with legumes and that focused on fertilization experiments. Two- and three-trait combinations of the five traits used here (leaf nitrogen percentage, height, specific root length, leaf mass per unit area, and nitrogen fixation) resulted in the FD values with the greatest predictive power. Both PD and FD can be valuable predictors of the effect of biodiversity on ecosystem functioning, which suggests that a focus on both community trait diversity and evolutionary history can improve understanding of the consequences of biodiversity loss.
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