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Role of environmental, historical and spatial processes in the structure of Neotropical primate communities: contrasting taxonomic and phylogenetic perspectives

机译:环境,历史和空间过程在新热带灵长类动物群落结构中的作用:分类学和系统发育观点的对比

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Aim To evaluate relative importance of niche, historical and spatial processes on the taxonomic and phylogenetic structure of primate communities. Location Neotropics. Methods Data on community composition for 74 sites were gathered from the literature. Communities were characterized based on taxonomic and phylogenetic composition. Three predictive matrices were used as explanatory variables representing ecological (environmental), historical (riverine barriers and Pleistocene refugia) and dispersal-based spatial hypotheses (spatial principal coordinates of neighbour matrices vectors based on geographic coordinates). Variation partitioning analyses were used to decouple independent and shared effects. Permutation procedures based on redundancy analysis were used to determine if explained variation was statistically significant. Results Forty-nine per cent of variation in taxonomic structure and 66% of variation in phylogenetic structure was explained by selected predictor variables. Independent effects of spatial variables explained the largest portion of variation in both diversity metrics. Fractions representing shared effects of historical and spatial variables, and of all variables combined, were also large and significant. Independent effects of environmental and historical variables were small to non-existent (<4%). When analysing each phylogenetic metric independently the relative contributions of shared fractions changed, although the independent spatial fraction remained the most important predictor. Main conclusions Our results show that purely spatial processes, such as dispersal limitation, may play a stronger role in structuring primate communities than niche mechanisms and historical events. Furthermore, we find that the influence of ecological and evolutionary mechanisms is conflated with spatial processes, suggesting that community structure is determined jointly by spatial mechanisms reflecting environmental gradients and biogeographical processes. Although the relative contributions of each predictor variable were similar between taxonomic and phylogenetic metrics, a deeper examination of phylogenetic metrics suggests that ecological, historical and spatial mechanisms interact in complex ways to determine current patterns of phylogenetic community structure.
机译:目的评估生态位,历史和空间过程对灵长类动物群落分类和系统发育结构的相对重要性。位置新热带。方法从文献中收集74个站点的社区组成数据。基于分类和系统发育组成对社区进行了表征。使用三个预测矩阵作为解释变量,分别代表生态变量(环境变量),历史变量(河滨屏障和更新世避难所)和基于散布的空间假设(基于地理坐标的相邻矩阵向量的空间主坐标)。变异划分分析用于分离独立效应和共享效应。使用基于冗余分析的置换程序来确定所解释的变异是否具有统计学意义。结果通过选择的预测变量解释了分类结构变异的49%和系统发育变异的66%。空间变量的独立影响解释了两个多样性指标中变化的最大部分。代表历史和空间变量以及所有组合变量的共享影响的分数也很大且很重要。环境和历史变量的独立影响很小甚至不存在(<4%)。当独立地分析每个系统发育指标时,尽管独立的空间分数仍然是最重要的预测因子,但共享分数的相对贡献却发生了变化。主要结论我们的结果表明,与空间机制和历史事件相比,纯粹的空间过程(例如扩散限制)在构建灵长类动物群落中可能发挥更大的作用。此外,我们发现生态和进化机制的影响与空间过程有关,这表明群落结构是由反映环境梯度和生物地理过程的空间机制共同决定的。尽管分类学和系统发育指标之间每个预测变量的相对贡献相似,但对系统发育指标的更深入研究表明,生态,历史和空间机制以复杂的方式相互作用,以确定当前的系统发育群落结构模式。

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