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近交系小鼠新突变谱的变化。

Variation in the Spectrum of New Mutations among Inbred Strains of Mice.

机构信息

Institute of Ecology and Evolution, University of Edinburgh, Edinburgh, EH9 3FL, UK.

Department for Evolutionary Genetics, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany.

出版信息

Mol Biol Evol. 2024 Aug 2;41(8). doi: 10.1093/molbev/msae163.

Abstract

The mouse serves as a mammalian model for understanding the nature of variation from new mutations, a question that has both evolutionary and medical significance. Previous studies suggest that the rate of single-nucleotide mutations (SNMs) in mice is ∼50% of that in humans. However, information largely comes from studies involving the C57BL/6 strain, and there is little information from other mouse strains. Here, we study the mutations that accumulated in 59 mouse lines derived from four inbred strains that are commonly used in genetics and clinical research (BALB/cAnNRj, C57BL/6JRj, C3H/HeNRj, and FVB/NRj), maintained for eight to nine generations by brother-sister mating. By analyzing Illumina whole-genome sequencing data, we estimate that the average rate of new SNMs in mice is ∼μ = 6.7 × 10-9. However, there is substantial variation in the spectrum of SNMs among strains, so the burden from new mutations also varies among strains. For example, the FVB strain has a spectrum that is markedly skewed toward C→A transversions and is likely to experience a higher deleterious load than other strains, due to an increased frequency of nonsense mutations in glutamic acid codons. Finally, we observe substantial variation in the rate of new SNMs among DNA sequence contexts, CpG sites, and their adjacent nucleotides playing an important role.

摘要

老鼠是研究新突变变异性质的哺乳动物模型,这个问题具有进化和医学意义。先前的研究表明,老鼠中单核苷酸突变(SNMs)的速率约为人类的 50%。然而,这些信息主要来自涉及 C57BL/6 品系的研究,来自其他鼠品系的信息很少。在这里,我们研究了在四个常用于遗传学和临床研究的近交系(BALB/cAnNRj、C57BL/6JRj、C3H/HeNRj 和 FVB/NRj)中衍生的 59 条鼠系中积累的突变。这些系经过 8-9 代的兄妹交配繁殖。通过分析 Illumina 全基因组测序数据,我们估计老鼠中新 SNMs 的平均速率约为 μ = 6.7×10-9。然而,SNMs 在不同品系之间的频谱存在很大差异,因此新突变的负担在不同品系之间也存在差异。例如,FVB 品系的 C→A 颠换谱明显偏向,由于谷氨酸密码子中的无义突变频率增加,其可能比其他品系经历更高的有害负荷。最后,我们观察到新 SNMs 在 DNA 序列背景、CpG 位点及其相邻核苷酸之间的速率存在很大差异,这些因素起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90e6/11327921/e5293d153b17/msae163f1.jpg

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