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Comparative evolutionary genetics of spontaneous mutations affecting fitness in rhabditid nematodes

机译:影响大戟线虫自发突变的比较进化遗传学

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摘要

Deleterious mutations are of fundamental importance to all aspects of organismal biology. Evolutionary geneticists have expended tremendous effort to estimate the genome-wide rate of mutation and the effects of new mutations on fitness, but the degree to which genomic mutational properties vary within and between taxa is largely unknown, particularly in multicellular organisms. Beginning with two highly inbred strains from each of three species in the nematode family Rhabditidae (Caenorhabditis briggsae, Caenorhabditis elegans, and Oscheius myriophila), we allowed mutations to accumulate in the relative absence of natural selection for 200 generations. We document significant variation in the rate of decay of fitness because of new mutations between strains and between species. Estimates of the per-generation mutational decay of fitness were very consistent within strains between assays 100 generations apart. Rate of mutational decay in fitness was positively associated with genomic mutation rate and negatively associated with average mutational effect. These results provide unambiguous experimental evidence for substantial variation in genome-wide properties of mutation both within and between species and reinforce conclusions from previous experiments that the cumulative effects on fitness of new mutations can differ markedly among related taxa.
机译:有害突变对于有机生物学的各个方面都至关重要。进化遗传学家付出了巨大的努力来估计全基因组范围内的突变率以及新突变对适应性的影响,但是基因组突变特性在类群内和类群之间变化的程度尚不清楚,尤其是在多细胞生物中。从线虫科Rhabditidae(Caenorhabditis briggsae,Caenorhabditis elegans和Oscheius myriophila)的三个物种中的每个物种的两个高度近交系开始,我们允许突变在相对缺乏自然选择的情况下积累200代。我们记录了由于品系之间和物种之间的新突变而导致的适应度衰减率的显着变化。在相隔100代的测定之间的菌株中,每代适应度突变衰减的估计非常一致。适应性突变衰减率与基因组突变率呈正相关,与平均突变效应呈负相关。这些结果提供了明确的实验证据,表明物种内部和物种之间的突变在全基因组范围内的实质性变化,并强化了先前实验得出的结论,即新突变对适应性的累积影响在相关分类单元中可能存在显着差异。

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