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揭示短谱系中的突变固定相关性。

Uncovering the mutation-fixation correlation in short lineages.

作者信息

Vallender Eric J, Lahn Bruce T

机构信息

Howard Hughes Medical Institute, Department of Human Genetics, and Committee on Genetics, University of Chicago, USA.

出版信息

BMC Evol Biol. 2007 Sep 21;7:168. doi: 10.1186/1471-2148-7-168.

Abstract

BACKGROUND

We recently reported a highly unexpected positive correlation between the fixation probability of nonsynonymous mutations (estimated by omega) and neutral mutation rate (estimated by Ks) in mammalian lineages. However, this positive correlation was observed for lineages with relatively long divergence time such as the human-mouse lineage, and was not found for very short lineages such as the human-chimpanzee lineage. It was previously unclear how to interpret this discrepancy. It may indicate that the positive correlation between omega and Ks in long lineages is a false finding. Alternatively, it may reflect a biologically meaningful difference between various lineages. Finally, the lack of positive correlation in short lineages may be the result of methodological artifacts.

RESULTS

Here we show that a strong positive correlation can indeed be seen in short lineages when a method was introduced to correct for the inherently high levels of stochastic noise in the use of Ks as an estimator of neutral mutation rate. Thus, the previously noted lack of positive correlation between omega and Ks in short lineages is due to stochastic noise in Ks that makes it a far less reliable estimator of neutral mutation rate in short lineages as compared to long lineages.

CONCLUSION

A positive correlation between omega and Ks can be observed in all mammalian lineages for which large amounts of sequence data are available, including very short lineages. It confirms the authenticity of this highly unexpected correlation, and argues that the correction likely applies broadly across all mammals and perhaps even non-mammalian species.

摘要

背景

我们最近报道了在哺乳动物谱系中非同义突变的固定概率(由ω估计)与中性突变率(由Ks估计)之间存在高度意外的正相关。然而,这种正相关是在分歧时间相对较长的谱系(如人-鼠谱系)中观察到的,而在分歧时间非常短的谱系(如人-黑猩猩谱系)中未发现。此前尚不清楚如何解释这种差异。这可能表明长谱系中ω与Ks之间的正相关是一个错误发现。或者,它可能反映了不同谱系之间生物学上有意义的差异。最后,短谱系中缺乏正相关可能是方法学假象的结果。

结果

在这里我们表明,当引入一种方法来校正将Ks用作中性突变率估计值时固有的高水平随机噪声时,在短谱系中确实可以看到很强的正相关。因此,先前指出的短谱系中ω与Ks之间缺乏正相关是由于Ks中的随机噪声导致其在短谱系中作为中性突变率的估计值远不如长谱系可靠。

结论

在所有有大量序列数据可用的哺乳动物谱系中,包括非常短的谱系,都可以观察到ω与Ks之间的正相关。这证实了这种高度意外的相关性的真实性,并表明这种校正可能广泛适用于所有哺乳动物,甚至可能适用于非哺乳动物物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e894/2071921/9930667d03f6/1471-2148-7-168-1.jpg

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