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Heterogeneous models place the root of the placental mammal phylogeny

机译:异质模型放置胎盘哺乳动物的系统发育的根

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摘要

Heterogeneity among life traits in mammals has resulted in considerable phylogenetic conflict, particularly concerning the position of the placental root. Layered upon this are gene- and lineage-specific variation in amino acid substitution rates and compositional biases. Life trait variations that may impact upon mutational rates are longevity, metabolic rate, body size, and germ line generation time. Over the past 12 years, three main conflicting hypotheses have emerged for the placement of the placental root. These hypotheses place the Atlantogenata (common ancestor of Xenarthra plus Afrotheria), the Afrotheria, or the Xenarthra as the sister group to all other placental mammals. Model adequacy is critical for accurate tree reconstruction and by failing to account for these compositional and character exchange heterogeneities across the tree and data set, previous studies have not provided a strongly supported hypothesis for the placental root. For the first time, models that accommodate both tree and data set heterogeneity have been applied to mammal data. Here, we show the impact of accurate model assignment and the importance of data sets in accommodating model parameters while maintaining the power to reject competing hypotheses. Through these sophisticated methods, we demonstrate the importance of model adequacy, data set power and provide strong support for the Atlantogenata over other competing hypotheses for the position of the placental root.
机译:哺乳动物生命特征之间的异质性导致了相当大的系统发育冲突,尤其是胎盘根的位置。在此之上的是氨基酸取代率和组成偏差的基因和谱系特异性变化。可能影响突变率的生活特征变异包括寿命,代谢率,体型和种系生成时间。在过去的12年中,关于胎盘根的位置出现了三个主要矛盾的假设。这些假设将Atlantogenata(Xenarthra加上Afrotheria的共同祖先),Afrotheria或Xenarthra视为所有其他胎盘哺乳动物的姊妹群体。模型的正确性对于精确的树木重建至关重要,并且由于无法考虑树木和数据集之间的这些组成和字符交换异质性,因此先前的研究并未为胎盘根提供强有力的支持假设。首次将适应树和数据集异质性的模型应用于哺乳动物数据。在这里,我们展示了精确模型分配的影响以及数据模型在容纳模型参数的同时保持拒绝竞争假设的能力的重要性。通过这些复杂的方法,我们证明了模型充分性,数据集功能的重要性,并为Atlantogenata提供了强大的支持,优于其他有关胎盘根位置的假设。

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