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Niche evolution and diversification in a Neotropical radiation of birds (Aves: Furnariidae)

机译:鸟类新辐射的利基演变与多样化(Aves:Furnariidae)

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Rapid diversification may be caused by ecological adaptive radiation via niche divergence. In this model, speciation is coupled with niche divergence and lineage diversification is predicted to be correlated with rates of niche evolution. Studies of the role of niche evolution in diversification have generally focused on ecomorphological diversification but climatic-niche evolution may also be important. We tested these alternatives using a phylogeny of 298 species of ovenbirds (Aves: Furnariidae). We found that within Furnariidae, variation in species richness and diversification rates of subclades were best predicted by rate of climaticniche evolution than ecomorphological evolution. Although both are clearly important, univariate regression and multivariate model averaging more consistently supported the climatic-niche as the best predictor of lineage diversification. Our study adds to the growing body of evidence, suggesting that climatic-niche divergence may be an important driver of rapid diversification in addition to ecomorphological evolution. However, this pattern may depend on the phylogenetic scale at which rate heterogeneity is examined.
机译:通过利基发散的生态适应性辐射可能引起快速多样化。在该模型中,物种的耦合与利基发散,并且谱图多样化预测与利基演化的速率相关。对利基演化在多元化多样化中的作用的研究通常集中在生态学多样化上,但气候 - 利基进化也可能是重要的。我们使用298种卵巢(Aves:Furnariidae)的系统来测试这些替代品。我们发现,在Furnariidae中,最佳率的余量和亚克斯多元化率的变化最佳地预测,而不是生态肌肤的进化。虽然两者都显然是重要的,但是单变量回归和多元模型平均更加一致地支持气候利基作为谱系多样化的最佳预测因子。我们的研究增加了越来越多的证据,表明,除了经过生态形态进化之外,气候利基分歧可能是快速多样化的重要推动力。然而,这种模式可取决于检查速率异质性的系统发育规模。

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