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必需异交的秀丽隐杆线虫突变积累系中,经 RNAi 诱导的错配修复基因 msh-2 敲低后,突变率和突变谱。

Mutation rate and spectrum in obligately outcrossing Caenorhabditis elegans mutation accumulation lines subjected to RNAi-induced knockdown of the mismatch repair gene msh-2.

机构信息

Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX 77845, USA.

Faculdade de Ciência da Universidade de Lisboa (FCUL), CE3C-Centre for Ecology, Evolution and Environmental Changes, 1749-016 Lisboa, Portugal.

出版信息

G3 (Bethesda). 2022 Jan 4;12(1). doi: 10.1093/g3journal/jkab364.

Abstract

DNA mismatch repair (MMR), an evolutionarily conserved repair pathway shared by prokaryotic and eukaryotic species alike, influences molecular evolution by detecting and correcting mismatches, thereby protecting genetic fidelity, reducing the mutational load, and preventing lethality. Herein we conduct the first genome-wide evaluation of the alterations to the mutation rate and spectrum under impaired activity of the MutSα homolog, msh-2, in Caenorhabditis elegans male-female fog-2(lf) lines. We performed mutation accumulation (MA) under RNAi-induced knockdown of msh-2 for up to 50 generations, followed by next-generation sequencing of 19 MA lines and the ancestral control. msh-2 impairment in the male-female background substantially increased the frequency of nuclear base substitutions (∼23×) and small indels (∼328×) relative to wildtype hermaphrodites. However, we observed no increase in the mutation rates of mtDNA, and copy-number changes of single-copy genes. There was a marked increase in copy-number variation of rDNA genes under MMR impairment. In C. elegans, msh-2 repairs transitions more efficiently than transversions and increases the AT mutational bias relative to wildtype. The local sequence context, including sequence complexity, G + C-content, and flanking bases influenced the mutation rate. The X chromosome exhibited lower substitution and higher indel rates than autosomes, which can either result from sex-specific mutation rates or a nonrandom distribution of mutable sites between chromosomes. Provided the observed difference in mutational pattern is mostly due to MMR impairment, our results indicate that the specificity of MMR varies between taxa, and is more efficient in detecting and repairing small indels in eukaryotes relative to prokaryotes.

摘要

DNA 错配修复(MMR)是一种在原核生物和真核生物中都保守的修复途径,通过检测和纠正错配来影响分子进化,从而保护遗传保真度、降低突变负荷、防止致死性。在此,我们首次在 Caenorhabditis elegans 雌雄同体 fog-2(lf) 品系中,对 MutSα 同源物 msh-2 活性受损时的突变率和突变谱变化进行了全基因组评估。我们在 RNAi 诱导的 msh-2 敲低条件下进行了突变积累(MA)实验,持续 50 代,随后对 19 条 MA 系和原始对照进行了下一代测序。雌雄同体背景下 msh-2 的损伤显著增加了核碱基替换(23×)和小插入缺失(328×)的频率,与野生型雌雄同体相比。然而,我们没有观察到 mtDNA 突变率的增加,也没有观察到单拷贝基因的拷贝数变化。在 MMR 受损的情况下,rDNA 基因的拷贝数变异显著增加。在 C. elegans 中,msh-2 修复转换比颠换更有效,并增加了相对于野生型的 AT 突变偏向性。局部序列背景,包括序列复杂性、G+C 含量和侧翼碱基,影响了突变率。X 染色体的替换率低于常染色体,插入缺失率高于常染色体,这可能是由于性别的突变率不同,或者是由于染色体之间可突变位点的非随机分布。如果观察到的突变模式差异主要归因于 MMR 受损,那么我们的结果表明,MMR 的特异性在不同的分类群之间存在差异,并且在检测和修复真核生物中的小插入缺失方面比原核生物更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ee8/8727991/49de35e86e29/jkab364f1.jpg

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