Phylogenetic turnover during subtropical forest succession across environmental and phylogenetic scales

系统发育树 生态学 生物 生态演替 时序 系统发育学 非生物成分 社区 生物多样性 系统发育多样性 进化生物学 栖息地 生物化学 基因
作者
Oliver Purschke,Stefan G. Michalski,Helge Bruelheide,Walter Durka
出处
期刊:Ecology and Evolution [Wiley]
卷期号:7 (24): 11079-11091 被引量:37
标识
DOI:10.1002/ece3.3564
摘要

Abstract Although spatial and temporal patterns of phylogenetic community structure during succession are inherently interlinked and assembly processes vary with environmental and phylogenetic scales, successional studies of community assembly have yet to integrate spatial and temporal components of community structure, while accounting for scaling issues. To gain insight into the processes that generate biodiversity after disturbance, we combine analyses of spatial and temporal phylogenetic turnover across phylogenetic scales, accounting for covariation with environmental differences. We compared phylogenetic turnover, at the species‐ and individual‐level, within and between five successional stages, representing woody plant communities in a subtropical forest chronosequence. We decomposed turnover at different phylogenetic depths and assessed its covariation with between‐plot abiotic differences. Phylogenetic turnover between stages was low relative to species turnover and was not explained by abiotic differences. However, within the late‐successional stages, there was high presence‐/absence‐based turnover (clustering) that occurred deep in the phylogeny and covaried with environmental differentiation. Our results support a deterministic model of community assembly where (i) phylogenetic composition is constrained through successional time, but (ii) toward late succession, species sorting into preferred habitats according to niche traits that are conserved deep in phylogeny, becomes increasingly important.
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