Thompson Patrick L, Davies T Jonathan, Gonzalez Andrew
Department of Biology, McGill University, Montreal, Quebec, Canada.
PLoS One. 2015 Feb 18;10(2):e0117595. doi: 10.1371/journal.pone.0117595. eCollection 2015.
In experimental systems, it has been shown that biodiversity indices based on traits or phylogeny can outperform species richness as predictors of plant ecosystem function. However, it is unclear whether this pattern extends to the function of food webs in natural ecosystems. Here we tested whether zooplankton functional and phylogenetic diversity explains the functioning of 23 natural pond communities. We used two measures of ecosystem function: (1) zooplankton community biomass and (2) phytoplankton abundance (Chl a). We tested for diversity-ecosystem function relationships within and across trophic levels. We found a strong correlation between zooplankton diversity and ecosystem function, whereas local environmental conditions were less important. Further, the positive diversity-ecosystem function relationships were more pronounced for measures of functional and phylogenetic diversity than for species richness. Zooplankton and phytoplankton biomass were best predicted by different indices, suggesting that the two functions are dependent upon different aspects of diversity. Zooplankton community biomass was best predicted by zooplankton trait-based functional richness, while phytoplankton abundance was best predicted by zooplankton phylogenetic diversity. Our results suggest that the positive relationship between diversity and ecosystem function can extend across trophic levels in natural environments, and that greater insight into variation in ecosystem function can be gained by combining functional and phylogenetic diversity measures.
在实验系统中,研究表明基于性状或系统发育的生物多样性指数在预测植物生态系统功能方面可能优于物种丰富度。然而,尚不清楚这种模式是否适用于自然生态系统中食物网的功能。在此,我们测试了浮游动物的功能多样性和系统发育多样性是否能解释23个天然池塘群落的功能。我们使用了两种生态系统功能指标:(1)浮游动物群落生物量和(2)浮游植物丰度(叶绿素a)。我们测试了营养级内部和营养级之间的多样性与生态系统功能的关系。我们发现浮游动物多样性与生态系统功能之间存在很强的相关性,而当地环境条件的影响较小。此外,功能多样性和系统发育多样性指标的多样性与生态系统功能的正相关关系比物种丰富度更为明显。浮游动物和浮游植物生物量由不同的指数预测效果最佳,这表明这两种功能依赖于多样性的不同方面。浮游动物群落生物量由基于浮游动物性状的功能丰富度预测效果最佳,而浮游植物丰度由浮游动物系统发育多样性预测效果最佳。我们的结果表明,多样性与生态系统功能之间的正相关关系可以在自然环境中的营养级之间延伸,并且通过结合功能多样性和系统发育多样性指标可以更深入地了解生态系统功能的变化。