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Contrasting outcomes of species- and community-level analyses of the temporal consistency of functional composition

机译:功能组成的时间一致性的物种与社区水平分析的对比

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Multiple anthropogenic drivers affect every natural community, and there is broad interest in using functional traits to understand and predict the consequences for future biodiversity. There is, however, no consensus regarding the choice of analytical methods. We contrast species- and community-level analyses of change in the functional composition for four traits related to drought tolerance using three decades of repeat censuses of trees in the 50-ha Forest Dynamics Plot on Barro Colorado Island, Panama. Community trait distributions shifted significantly through time, which may indicate a shift toward more drought tolerant species. However, at the species level, changes in abundance were unrelated to trait values. To reconcile these seemingly contrasting results, we evaluated species- specific contributions to the directional shifts observed at the community level. Abundance changes of just one to six of 312 species were responsible for the community-level shifts observed for each trait. Our results demonstrate that directional changes in community-level functional composition can result from idiosyncratic change in a few species rather than widespread community-wide changes associated with functional traits. Future analyses of directional change in natural communities should combine community-,species-, and possibly individual-level analyses to uncover relationships with function that can improve understanding and enable prediction.
机译:多个人为司机影响每个自然社区,并且广泛兴趣使用功能性状来理解和预测未来生物多样性的后果。但是,没有关于分析方法的选择的共识。在巴拿马巴罗罗科罗岛上的50-HA森林动力学情节中的三十年的树木重复普查与旱灾耐受有关的四个特征的对比度和社区水平分析。社区特质分布显着转移到时间,这可能表明朝向更多耐旱性的转变。但是,在物种级别,丰富的变化与特征价值无关。为了调和这些看似对比的结果,我们评估了对社区一级观察到的定向转变的物种特定贡献。 312种中只有一到六种的丰富变化是对每个特征观察到的社区级别的负责。我们的结果表明,社区级功能组合物的定向变化可能由几种物种的特质变化而不是与功能性状相关的广泛群心变化。未来自然社区的定向变化的分析应结合社区,物种,以及可能的个性级别分析,以发现可以改善理解和实现预测的功能的关系。

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