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Temporal turnover in the composition of tropical tree communities: Functional determinism and phylogenetic stochasticity

机译:热带树木群落组成中的时间变化:功能决定论和系统发生随机性

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The degree to which turnover in biological communities is structured by deterministic or stochastic factors and the identities of influential deterministic factors are fundamental, yet unresolved, questions in ecology. Answers to these questions are particularly important for projecting the fate of forests with diverse disturbance histories worldwide. To uncover the processes governing turnover we use species-level molecular phylogenies and functional trait data sets for two long-term tropical forest plots with contrasting disturbance histories: one forest is older-growth, and one was recently disturbed. Having both phylogenetic and functional information further allows us to parse out the deterministic influences of different ecological filters. With the use of null models we find that compositional turnover was random with respect to phylogeny on average, but highly nonrandom with respect to measured functional traits. Furthermore, as predicted by a deterministic assembly process, the older-growth and disturbed forests were characterized by less than and greater than expected functional turnover, respectively. These results suggest that the abiotic environment, which changes due to succession in the disturbed forest, strongly governs the temporal dynamics of disturbed and undisturbed tropical forests. Predicting future changes in the composition of disturbed and undisturbed forests may therefore be tractable when using a functional-trait-based approach.
机译:生物群落的周转率是由确定性或随机性因素构成的,影响性确定性因素的身份是生态学中的根本问题,但尚未解决。这些问题的答案对于预测全世界具有多种干扰历史的森林的命运特别重要。为了揭示控制周转的过程,我们使用了物种水平的分子系统发育和功能性状数据集,用于两个具有不同干扰历史的长期热带森林地块:一个森林是较老的森林,而另一个则是最近受到干扰的森林。同时拥有系统发生信息和功能信息,还使我们能够解析出不同生态过滤器的确定性影响。通过使用无效模型,我们发现成分更新平均相对于系统发育是随机的,但是相对于测得的功能性状则非常不随机。此外,正如确定性装配过程所预测的那样,较早生长的森林和受干扰的森林分别具有小于和大于预期的功能性周转的特征。这些结果表明,由于受干扰森林的演替而改变的非生物环境强烈地支配着受干扰和未受干扰的热带森林的时间动态。因此,使用基于功能特征的方法来预测受干扰和未受干扰的森林的未来变化可能很容易。

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