Upper limit of the rate and per generation effects of deleterious genomic mutations.

Hong-Wen Deng, Jian Li, Michael E Pfrender, Jin-Long Li, Hongyi Deng
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引用次数: 4

Abstract

Unbiased or upper limit estimates of the rate (U) of genomic mutations to mildly deleterious alleles are crucial in genetic and conservation studies and in human health care. However, only a few estimates of the lower bounds of U are available. We present a fairly robust estimation that yields an upper limit of U and a nearly unbiased estimate of the per generation fitness decline due to new deleterious mutations. We applied the approach to three species of the freshwater microcrustacean Daphnia and revealed that the upper limit of U for egg survivorship is 0.73 (SD = 0.30) in 14 D. pulicaria populations. For the first four clutches, per generation decline in fecundity due to deleterious mutations ranged from 2.2% to 7.8% in 20 D. pulex populations and from 1.1% to 5.1% in 8 D. obtusa populations. These results indicate the mutation pressure is high in natural Daphnia populations. The approach investigated here provides a potential way to quickly and conveniently characterize U and per generation effects of deleterious genomic mutations on fitness or its important components such as fecundity.

有害基因组突变率和每代效应的上限。
对轻度有害等位基因的基因组突变率(U)的无偏估计或上限估计在遗传和保护研究以及人类保健中至关重要。然而,对于U的下界,只有很少的估计是可用的。我们提出了一个相当稳健的估计,产生了U的上限和由于新的有害突变导致的每代适应度下降的几乎无偏的估计。将该方法应用于3种淡水微甲壳类水蚤(Daphnia),结果表明,14个水蚤种群的卵存活率U上限为0.73 (SD = 0.30)。在头4个窝中,由于有害突变导致的每代繁殖力下降在20个长尾田鼠群体中为2.2% ~ 7.8%,在8个长尾田鼠群体中为1.1% ~ 5.1%。这些结果表明,天然水蚤种群的突变压力很大。本文研究的方法为快速方便地表征有害基因组突变对适合度或其重要组成部分(如繁殖力)的U和每代影响提供了一种潜在的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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