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Disentangling environmental and spatial effects on phylogenetic structure of angiosperm tree communities in China

机译:解析环境和空间效应对中国被子植物群落系统发育的影响

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摘要

Niche-based and neutrality-based theories are two major classes of theories explaining the assembly mechanisms of local communities. Both theories have been frequently used to explain species diversity and composition in local communities but their relative importance remains unclear. Here, we analyzed 57 assemblages of angiosperm trees in 0.1-ha forest plots across China to examine the effects of environmental heterogeneity (relevant to niche-based processes) and spatial contingency (relevant to neutrality-based processes) on phylogenetic structure of angiosperm tree assemblages distributed across a wide range of environment and space. Phylogenetic structure was quantified with six phylogenetic metrics (i.e., phylogenetic diversity, mean pairwise distance, mean nearest taxon distance, and the standardized effect sizes of these three metrics), which emphasize on different depths of evolutionary histories and account for different degrees of species richness effects. Our results showed that the variation in phylogenetic metrics explained independently by environmental variables was on average much greater than that explained independently by spatial structure, and the vast majority of the variation in phylogenetic metrics was explained by spatially structured environmental variables. We conclude that niche-based processes have played a more important role than neutrality-based processes in driving phylogenetic structure of angiosperm tree species in forest communities in China.
机译:基于小生境的理论和基于中立性的理论是解释当地社区聚集机制的两大类理论。两种理论都经常被用来解释当地社区的物种多样性和组成,但是它们的相对重要性仍然不清楚。在这里,我们分析了中国0.1公顷林区中的57种被子植物组合,以研究环境异质性(与基于生态位的过程相关)和空间偶然性(与中性基础的过程有关)对被子树组合的系统发育结构的影响。分布在广泛的环境和空间中。系统发育结构用六个系统发育指标(即系统发育多样性,平均成对距离,平均最近分类群距离以及这三个指标的标准化效应大小)进行了量化,这些指标着重于进化历史的不同深度并解释了物种丰富度的不同程度效果。我们的结果表明,由环境变量独立解释的系统发育指标变化平均而言要比由空间结构独立解释的变化大得多,并且系统发育指标的绝大多数变化都由空间结构化的环境变量解释。我们得出的结论是,在中国森林群落中,基于生态位的过程比基于中立性的过程在驱动被子植物树种的系统发育结构方面发挥了重要作用。

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