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精细尺度的分子进化特征可协调与插入/缺失相关突变的模型。

Fine-scale signatures of molecular evolution reconcile models of indel-associated mutation.

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, Ontario, Canada.

出版信息

Genome Biol Evol. 2013;5(5):978-86. doi: 10.1093/gbe/evt051.

Abstract

Genomic structural alterations that vary within species, known as large copy number variants, represent an unanticipated and abundant source of genetic diversity that associates with variation in gene expression and susceptibility to disease. Even short insertions and deletions (indels) can exert important effects on genomes by locally increasing the mutation rate, with multiple mechanisms proposed to account for this pattern. To better understand how indels promote genome evolution, we demonstrate that the single nucleotide mutation rate is elevated in the vicinity of indels, with a resolution of tens of base pairs, for the two closely related nematode species Caenorhabditis remanei and C. sp. 23. In addition to indels being clustered with single nucleotide polymorphisms and fixed differences, we also show that transversion mutations are enriched in sequences that flank indels and that many indels associate with sequence repeats. These observations are compatible with a model that reconciles previously proposed mechanisms of indel-associated mutagenesis, implicating repeat sequences as a common driver of indel errors, which then recruit error-prone polymerases during DNA repair, resulting in a locally elevated single nucleotide mutation rate. The striking influence of indel variants on the molecular evolution of flanking sequences strengthens the emerging general view that mutations can induce further mutations.

摘要

基因组结构的改变在物种内变化,称为大片段拷贝数变异,是遗传多样性的一个意外且丰富的来源,与基因表达的变化和疾病易感性有关。即使是短的插入和缺失(indels)也可以通过局部增加突变率对基因组产生重要影响,提出了多种机制来解释这种模式。为了更好地理解 indels 如何促进基因组进化,我们证明了在两个密切相关的线虫物种 Caenorhabditis remanei 和 C. sp. 23 中,indels 附近的单核苷酸突变率升高,分辨率为数十个碱基对。除了 indels 与单核苷酸多态性和固定差异聚类外,我们还表明转换突变在侧翼 indels 的序列中富集,并且许多 indels 与序列重复有关。这些观察结果与一种模型一致,该模型调和了先前提出的 indel 相关诱变机制,将重复序列作为 indel 错误的常见驱动因素,然后在 DNA 修复过程中招募易错聚合酶,导致局部单核苷酸突变率升高。indel 变体对侧翼序列分子进化的强烈影响,增强了一个正在出现的普遍观点,即突变可以诱导进一步的突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be06/3673634/bc24db9f5f73/evt051f1p.jpg

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