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Partitioning the impact of environment and spatial structure on alpha and beta components of taxonomic functional and phylogenetic diversity in European ants

机译:划分环境和空间结构对欧洲蚂蚁分类功能和系统发育多样性的alpha和beta成分的影响

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摘要

We analyze the relative contribution of environmental and spatial variables to the alpha and beta components of taxonomic (TD), phylogenetic (PD), and functional (FD) diversity in ant communities found along different climate and anthropogenic disturbance gradients across western and central Europe, in order to assess the mechanisms structuring ant biodiversity. To this aim we calculated alpha and beta TD, PD, and FD for 349 ant communities, which included a total of 155 ant species; we examined 10 functional traits and phylogenetic relatedness. Variation partitioning was used to examine how much variation in ant diversity was explained by environmental and spatial variables. Autocorrelation in diversity measures and each trait’s phylogenetic signal were also analyzed. We found strong autocorrelation in diversity measures. Both environmental and spatial variables significantly contributed to variation in TD, PD, and FD at both alpha and beta scales; spatial structure had the larger influence. The different facets of diversity showed similar patterns along environmental gradients. Environment explained a much larger percentage of variation in FD than in TD or PD. All traits demonstrated strong phylogenetic signals. Our results indicate that environmental filtering and dispersal limitations structure all types of diversity in ant communities. Strong dispersal limitations appear to have led to clustering of TD, PD, and FD in western and central Europe, probably because different historical and evolutionary processes generated different pools of species. Remarkably, these three facets of diversity showed parallel patterns along environmental gradients. Trait-mediated species sorting and niche conservatism appear to structure ant diversity, as evidenced by the fact that more variation was explained for FD and that all traits had strong phylogenetic signals. Since environmental variables explained much more variation in FD than in PD, functional diversity should be a better indicator of community assembly processes than phylogenetic diversity.
机译:我们分析了环境和空间变量对沿整个西欧和中欧不同气候和人为干扰梯度发现的蚂蚁群落中分类学(TD),系统发生学(PD)和功能(FD)多样性的alpha和beta成分的相对贡献,为了评估构建蚂蚁生物多样性的机制。为此,我们计算了349种蚂蚁群落的alpha和beta TD,PD和FD,其中包括155种蚂蚁物种。我们检查了10个功能性状和系统发育相关性。变异划分用于检查蚂蚁多样性的多少由环境和空间变量解释。还分析了多样性测度中的自相关性以及每个性状的系统发育信号。我们在多样性测度中发现很强的自相关。环境和空间变量都显着促成了TD,PD和FD在alpha和beta尺度上的变化;空间结构影响较大。多样性的不同方面沿环境梯度显示出相似的模式。与TD或PD相比,环境说明FD的变化百分比要大得多。所有性状均表现出较强的系统发育信号。我们的结果表明,环境过滤和扩散限制构成了蚂蚁群落中所有类型的多样性。强烈的传播限制似乎导致了西欧和中欧的TD,PD和FD聚集,这可能是因为不同的历史和进化过程产生了不同的物种库。值得注意的是,这三个多样性方面都沿着环境梯度显示出平行的模式。特质介导的物种分选和生态位保守性似乎构成了蚂蚁的多样性,这一事实证明了以下事实:FD解释了更多的变异,并且所有性状都具有很强的系统发生信号。由于环境变量比FD解释了FD的差异要大得多,因此功能多样性应比系统发育多样性更好地指示社区装配过程。

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