首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Single-sperm sequencing reveals the accelerated mitochondrial mutation rate in male Daphnia pulex (Crustacea Cladocera)
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Single-sperm sequencing reveals the accelerated mitochondrial mutation rate in male Daphnia pulex (Crustacea Cladocera)

机译:单精子测序揭示了雄性蚤(线虫甲壳纲)线粒体突变率加快

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摘要

Mutation rate in the nuclear genome differs between sexes, with males contributing more mutations than females to their offspring. The male-biased mutation rates in the nuclear genome is most likely to be driven by a higher number of cell divisions in spermatogenesis than in oogenesis, generating more opportunities for DNA replication errors. However, it remains unknown whether male-biased mutation rates are present in mitochondrial DNA (mtDNA). Although mtDNA is maternally inherited and male mtDNA mutation typically does not contribute to genetic variation in offspring, male mtDNA mutations are critical for male reproductive health. In this study, we measured male mtDNA mutation rate using publicly available whole-genome sequences of single sperm of the freshwater microcrustacean Daphnia pulex. Using a stringent mutation detection pipeline, we found that the male mtDNA mutation rate is 3.32 × 10−6 per site per generation. All the detected mutations are heteroplasmic base substitutions, with 57% of mutations converting G/C to A/T nucleotides. Consistent with the male-biased mutation in the nuclear genome, the male mtDNA mutation rate in D. pulex is approximately 20 times higher than the female rate per generation. We propose that the elevated mutation rate per generation in male mtDNA is consistent with an increased number of cell divisions during male gametogenesis.
机译:性别之间的核基因组突变率不同,男性对其后代的贡献要大于女性。男性基因组中男性偏向的突变率最有可能是由精子发生中比生卵中更高数量的细胞分裂所驱动,从而产生了更多的DNA复制错误机会。但是,线粒体DNA(mtDNA)中是否存在男性偏向的突变率仍然未知。尽管mtDNA是母体遗传的,并且雄性mtDNA突变通常不会导致后代的遗传变异,但是雄性mtDNA突变对于雄性生殖健康至关重要。在这项研究中,我们使用淡水微甲壳类水蚤(Daphnia pulex)的单个精子的公共全基因组序列测量了雄性mtDNA突变率。使用严格的突变检测流水线,我们发现男性mtDNA突变率是每个世代每个位点的3.32×10 -6 。所有检测到的突变均为异质碱基取代,其中57%的突变将G / C转换为A / T核苷酸。与核基因组中的男性偏向突变一致,D。pulex中的男性mtDNA突变率大约是每代女性率的20倍。我们提出,雄性mtDNA中每一代的升高的突变率与雄性配子发生过程中细胞分裂数量的增加是一致的。

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