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随着时间推移,转换/颠换比下降揭示了核苷酸替换模型准确性的局限性。

Declining transition/transversion ratios through time reveal limitations to the accuracy of nucleotide substitution models.

作者信息

Duchêne Sebastián, Ho Simon Y W, Holmes Edward C

机构信息

School of Biological Sciences, The University of Sydney, Sydney, NSW, 2006, Australia.

Marie Bashir Institute for Infectious Diseases and Biosecurity, Charles Perkins Centre, Sydney Medical School, The University of Sydney, Sydney, NSW, 2006, Australia.

出版信息

BMC Evol Biol. 2015 Mar 11;15:36. doi: 10.1186/s12862-015-0312-6.

Abstract

BACKGROUND

Genetic analyses of DNA sequences make use of an increasingly complex set of nucleotide substitution models to estimate the divergence between gene sequences. However, there is currently no way to assess the validity of nucleotide substitution models over short time-scales and with limited mutational accumulation.

RESULTS

We show that quantifying the decline in the ratio of transitions to transversions (ti/tv) over time provides an in-built measure of mutational saturation and hence of substitution model accuracy. We tested this through detailed phylogenetic analyses of 10 representative virus data sets comprising recently sampled and closely related sequences. In the majority of cases our estimates of ti/tv decrease with time, even under sophisticated time-reversible models of nucleotide substitution. This indicates that high levels of saturation are attained extremely rapidly in viruses, sometimes within decades. In contrast, we did not find any temporal patterns in selection pressures or CG-content over these short time-frames. To validate the temporal trend of ti/tv across a broader taxonomic range, we analyzed a set of 76 different viruses. Again, the estimate of ti/tv scaled negatively with evolutionary time, a trend that was more pronounced for rapidly-evolving RNA viruses than slowly-evolving DNA viruses.

CONCLUSIONS

Our study shows that commonly used substitution models can underestimate the number of substitutions among closely related sequences, such that the time-scale of viral evolution and emergence may be systematically underestimated. In turn, estimates of ti/tv provide an effective internal control of substitution model performance in viruses because of their high sensitivity to mutational saturation.

摘要

背景

DNA序列的遗传分析利用日益复杂的核苷酸替换模型来估计基因序列之间的差异。然而,目前尚无方法在短时间尺度且突变积累有限的情况下评估核苷酸替换模型的有效性。

结果

我们表明,量化转换与颠换之比(ti/tv)随时间的下降提供了一种内在的突变饱和度量,从而也是替换模型准确性的度量。我们通过对10个代表性病毒数据集进行详细的系统发育分析来测试这一点,这些数据集包含最近采样的密切相关序列。在大多数情况下,即使在复杂的核苷酸替换时间可逆模型下,我们对ti/tv的估计也随时间下降。这表明病毒中极高水平的饱和度在极短时间内即可达到,有时在几十年内就能达到。相比之下,在这些短时间框架内,我们未发现选择压力或CG含量存在任何时间模式。为了在更广泛的分类范围内验证ti/tv的时间趋势,我们分析了一组76种不同的病毒。同样,ti/tv的估计值与进化时间呈负相关,这种趋势在快速进化的RNA病毒中比在缓慢进化的DNA病毒中更为明显。

结论

我们的研究表明,常用的替换模型可能会低估密切相关序列之间的替换数量,从而可能系统性地低估病毒进化和出现的时间尺度。反过来,由于ti/tv对突变饱和高度敏感,它为病毒中替换模型的性能提供了一种有效的内部对照。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87dd/4358783/e3100491884c/12862_2015_312_Fig1_HTML.jpg

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