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Phylogenies and traits provide distinct insights about the historical and contemporary assembly of aquatic insect communities

机译:系统发育和性状提供了有关水生昆虫群落历史和当代聚集的独特见解

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Abstract The assumption that traits and phylogenies can be used as proxies of species niche has faced criticisms. Evidence suggested that phylogenic relatedness is a weak proxy of trait similarity. Moreover, different processes can select different traits, giving opposing signals in null model analyses. To circumvent these criticisms, we separated traits of stream insects based on the concept of ???± and ???2 niches, which should give clues about assembling pressures expected to act independently of each other. We investigated the congruence between the phylogenetic structure and trait structure of communities using all available traits and all possible combinations of traits (4095 combinations). To account for hierarchical assembling processes, we analyzed patterns on two spatial scales with three pools of genera. Beta niche traits selected a priori ?¢???? i.e., traits related to environmental variation (e.g., respiration type) ?¢???? were consistently clustered on the smaller scale, suggesting environmental filtering, while ???± niche traits ?¢???? i.e., traits related to resource use (e.g., trophic position) ?¢???? did not display the expected overdispersion, suggesting a weak role of competition. Using all traits together provided random patterns and the analysis of all possible combinations of traits provided scenarios ranging from strong clustering to overdispersion. Communities were phylogenetically overdispersed, a pattern previously interpreted as phylogenetic limiting similarity. However, our results likely reflect the co-occurrence of ancient clades due to the stability of stream habitats along the evolutionary scale. We advise ecologists to avoid using combinations of all available traits but rather carefully traits based on the objective under consideration. Both trait and phylogenetic approaches should be kept in the ecologist toolbox, but phylogenetic distances should not be used as proxies of traits differences. Although the phylogenetic structure revealed processes operating at the evolutionary scale, only specific traits explained local processes operating in our communities.
机译:摘要特质和系统发育可以作为物种生态位的代理的假设受到了批评。有证据表明,系统发育相关性是性状相似性的弱代表。此外,不同的过程可以选择不同的特征,从而在空模型分析中给出相反的信号。为了避免这些批评,我们基于±和2位生态位的概念分离了溪流昆虫的性状,这应该提供有关预期彼此独立起作用的聚集压力的线索。我们使用所有可用的性状和所有可能的性状组合(4095个组合)调查了社区的系统发育结构和性状结构之间的一致性。为了说明分层组装过程,我们在两个空间尺度上分析了三个属的模式。 Beta生态位特征选择了先验吗?即与环境变化有关的特征(例如呼吸类型)始终以较小的规模聚集,表明环境过滤,而“±生态位特征”。即与资源使用相关的特征(例如营养位置)没有显示出预期的过度分散,表明竞争的作用较弱。一起使用所有特征提供了随机模式,对特征的所有可能组合的分析提供了从强聚类到过度分散的场景。群落是系统发育过度分散的,以前被解释为系统发育限制相似性的模式。然而,我们的结果很可能反映出由于进化尺度上河流生境的稳定性,古代进化枝的同时出现。我们建议生态学家避免使用所有可用特征的组合,而应根据所考虑的目标谨慎使用特征。性状和系统发育方法都应保存在生态学家工具箱中,但系统发育距离不应用作性状差异的代理。尽管系统发育结构揭示了在进化规模上运行的过程,但是只有特定的特征解释了在我们社区中运行的局部过程。

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