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鸟类线粒体DNA的体重校正分子速率。

Body mass-corrected molecular rate for bird mitochondrial DNA.

作者信息

Nabholz Benoit, Lanfear Robert, Fuchs Jérome

机构信息

Institut des Sciences de l'Evolution, UMR 5554, Université Montpellier place Eugène Bataillon, Montpellier Cedex 5, 34095, France.

Department of Biological Sciences, Faculty of Science, Macquarie University, Sydney, NSW, 2109, Australia.

出版信息

Mol Ecol. 2016 Sep;25(18):4438-49. doi: 10.1111/mec.13780. Epub 2016 Sep 6.

Abstract

Mitochondrial DNA remains one of the most widely used molecular markers to reconstruct the phylogeny and phylogeography of closely related birds. It has been proposed that bird mitochondrial genomes evolve at a constant rate of ~0.01 substitution per site per million years, that is that they evolve according to a strict molecular clock. This molecular clock is often used in studies of bird mitochondrial phylogeny and molecular dating. However, rates of mitochondrial genome evolution vary among bird species and correlate with life history traits such as body mass and generation time. These correlations could cause systematic biases in molecular dating studies that assume a strict molecular clock. In this study, we overcome this issue by estimating corrected molecular rates for birds. Using complete or nearly complete mitochondrial genomes of 475 species, we show that there are strong relationships between body mass and substitution rates across birds. We use this information to build models that use bird species' body mass to estimate their substitution rates across a wide range of common mitochondrial markers. We demonstrate the use of these corrected molecular rates on two recently published data sets. In one case, we obtained molecular dates that are twice as old as the estimates obtained using the strict molecular clock. We hope that this method to estimate molecular rates will increase the accuracy of future molecular dating studies in birds.

摘要

线粒体DNA仍然是用于重建近缘鸟类系统发育和系统地理学的最广泛使用的分子标记之一。有人提出,鸟类线粒体基因组以每百万年每个位点约0.01个替换的恒定速率进化,也就是说它们按照严格的分子钟进化。这个分子钟经常用于鸟类线粒体系统发育和分子年代测定的研究。然而,线粒体基因组的进化速率在鸟类物种之间有所不同,并且与体重和世代时间等生活史特征相关。这些相关性可能会在假设严格分子钟的分子年代测定研究中导致系统偏差。在本研究中,我们通过估计鸟类的校正分子速率来克服这个问题。利用475个物种的完整或近乎完整的线粒体基因组,我们表明鸟类的体重和替换速率之间存在很强的关系。我们利用这些信息构建模型,这些模型利用鸟类物种的体重来估计它们在广泛的常见线粒体标记上的替换速率。我们在两个最近发表的数据集上展示了这些校正分子速率的应用。在一个案例中,我们获得的分子年代是使用严格分子钟获得的估计值的两倍。我们希望这种估计分子速率的方法将提高未来鸟类分子年代测定研究的准确性。

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