De Novo Mutation Rates in Sticklebacks

生物 突变率 粘滞 系谱图 遗传学 有效人口规模 突变 人口 进化生物学 遗传多样性 基因组 遗传变异 基因 渔业 人口学 社会学
作者
Chaowei Zhang,Kerry Reid,Arthur F. Sands,Antoine Fraimout,Mikkel Heide Schierup,Juha Merilä
出处
期刊:Molecular Biology and Evolution [Oxford University Press]
卷期号:40 (9) 被引量:18
标识
DOI:10.1093/molbev/msad192
摘要

Abstract Mutation rate is a fundamental parameter in population genetics. Apart from being an important scaling parameter for demographic and phylogenetic inference, it allows one to understand at what rate new genetic diversity is generated and what the expected level of genetic diversity is in a population at equilibrium. However, except for well-established model organisms, accurate estimates of de novo mutation rates are available for a very limited number of organisms from the wild. We estimated mutation rates (µ) in two marine populations of the nine-spined stickleback (Pungitius pungitius) with the aid of several 2- and 3-generational family pedigrees, deep (>50×) whole-genome resequences and a high-quality reference genome. After stringent filtering, we discovered 308 germline mutations in 106 offspring translating to µ = 4.83 × 10−9 and µ = 4.29 × 10−9 per base per generation in the two populations, respectively. Up to 20% of the mutations were shared by full-sibs showing that the level of parental mosaicism was relatively high. Since the estimated µ was 3.1 times smaller than the commonly used substitution rate, recalibration with µ led to substantial increase in estimated divergence times between different stickleback species. Our estimates of the de novo mutation rate should provide a useful resource for research focused on fish population genetics and that of sticklebacks in particular.

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