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The shape of mammalian phylogeny:patterns, processes and scales

机译:哺乳动物系统发育的形状:模式,过程和尺度

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摘要

Mammalian phylogeny is far too asymmetric for all contemporaneous lineages to have had equal chances of diversifying. We consider this asymmetry or imbalance from four perspectives. First, we infer a minimal set of ‘regime changes’—points at which net diversification rate has changed— identifying 15 significant radiations and 12 clades that may be ‘downshifts’. We next show that mammalian phylogeny is similar in shape to a large set of published phylogenies of other vertebrate, arthropod and plant groups, suggesting that many clades may diversify under a largely shared set of ‘rules’. Third, we simulate six simple macroevolutionarymodels, showing that those where speciation slows down as geographical or niche space is filled, produce more realistic phylogenies than do models involving key innovations. Lastly, an analysis of the spatial scaling of imbalance shows that the phylogeny of species within an assemblage, ecoregion or larger area always tends to be more unbalanced than expected from the phylogeny of species at the next more inclusive spatial scale. We conclude with a verbal model of mammalian macroevolution, which emphasizes the importance to diversification of accessing new regions of geographical or niche space.
机译:哺乳动物的系统发育对于所有同期的世系来说都太不对称,以致没有机会平等地发展。我们从四个角度考虑这种不对称或不平衡。首先,我们推断出一套最少的“制度变化”(净多元化率发生了变化的点),确定了15个重要的辐射和12个进化枝可能是“降档”的。接下来,我们将显示哺乳动物的系统发育与其他已发表的其他脊椎动物,节肢动物和植物群体的系统发育相似,这表明许多进化枝可能在很大程度上共享的“规则”下多样化。第三,我们模拟了六个简单的宏观进化模型,这些模型表明,随着地理或生态位空间的填充,物种形成速度降低的物种比涉及关键创新的模型产生更真实的系统发育。最后,对不平衡的空间尺度分析表明,集合,生态区域或更大区域内物种的系统发育总是比下一个更具包容性的空间尺度上的物种系统发育所期望的更加不平衡。我们以哺乳动物宏观进化的语言模型作为结束,该模型强调了访问地理或生态位空间新区域对多样化的重要性。

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