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Corrected placement of Mus-Rattus fossil calibration forces precision in the molecular tree of rodents

机译:校正了Mus-Rattus化石校准物的位置后其在啮齿动物分子树中的精度得以提高

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摘要

Time calibration derived from the fossil record is essential for molecular phylogenetic and evolutionary studies. Fossil mice and rats, discovered in the Siwalik Group of Pakistan, have served as one of the best-known fossil calibration points in molecular phylogenic studies. Although these fossils have been widely used as the 12 Ma date for the Mus/Rattus split or a more basal split, conclusive paleontological evidence for the nodal assignments has been absent. This study analyzes newly recognized characters that demonstrate lineage separation in the fossil record of Siwalik murines and examines the most reasonable nodal placement of the diverging lineages in a molecular phylogenetic tree by ancestral state reconstruction. Our specimen-based approach strongly indicates that Siwalik murines of the Karnimata clade are fossil members of the Arvicanthini-Otomyini-Millardini clade, which excludes Rattus and its relatives. Combining the new interpretation with the widely accepted hypothesis that the Progonomys clade includes Mus, the lineage separation event in the Siwalik fossil record represents the Mus/Arvicanthis split. Our test analysis on Bayesian age estimates shows that this new calibration point provides more accurate estimates of murine divergence than previous applications. Thus, we define this fossil calibration point and refine two other fossil-based points for molecular dating.
机译:来自化石记录的时间校准对于分子系统发育和进化研究至关重要。在巴基斯坦的西瓦里克(Siwalik)小组中发现的化石小鼠和大鼠已成为分子系统发生研究中最著名的化石校准点之一。尽管这些化石已被广泛用作Mus / Rattus分裂或更基性分裂的12 Ma年代,但仍缺乏有关节点分配的确凿的古生物学证据。这项研究分析了新发现的特征,这些特征在Siwalik鼠的化石记录中证明了谱系分离,并通过祖先状态重建研究了分子谱系树中发散谱系最合理的节点位置。我们基于标本的方法有力地表明,Karnimata进化枝的Siwalik鼠是Arvicanthini-Otomyini-Millardini进化枝的化石成员,其中不包括Rattus及其亲属。结合新的解释和公认的Progonomys进化枝包括Mus的假设,Siwalik化石记录中的谱系分离事件代表Mus / Arvicanthis分裂。我们对贝叶斯年龄估计的测试分析表明,与以前的应用相比,这个新的校准点可提供更准确的鼠类差异估计。因此,我们定义了这个化石校准点,并完善了另外两个基于化石的点用于分子测年。

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