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High mutation rate and predominance of insertions in the Caenorhabditis elegans nuclear genome

机译:秀丽隐杆线虫核基因组的高突变率和插入优势

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Mutations have pivotal functions in the onset of genetic diseases and are the fundamental substrate for evolution. However, present estimates of the spontaneous mutation rate and spectrum are derived from indirect and biased measurements. For instance, mutation rate estimates for Caenorhabditis elegans are extrapolated from observations on a few genetic loci with visible phenotypes and vary over an order of magnitude(1). Alternative approaches in mammals, relying on phylogenetic comparisons of pseudogene loci(2) and fourfold degenerate codon positions(3), suffer from uncertainties in the actual number of generations separating the compared species and the inability to exclude biases associated with natural selection. Here we provide a direct and unbiased estimate of the nuclear mutation rate and its molecular spectrum with a set of C. elegans mutation-accumulation lines that reveal a mutation rate about tenfold higher than previous indirect estimates and an excess of insertions over deletions. Because deletions dominate patterns of C. elegans pseudogene variation(4,5), our observations indicate that natural selection might be significant in promoting small genome size, and challenge the prevalent assumption that pseudogene divergence accurately reflects the spontaneous mutation spectrum.
机译:突变在遗传疾病的发作中具有关键作用,是进化的基础。但是,目前对自发突变率和频谱的估计是从间接和有偏见的测量得出的。例如,秀丽隐杆线虫的突变率估计值是从对几个具有可见表型的遗传基因座的观察中推断出来的,并且在一个数量级上变化(1)。哺乳动物的其他方法依赖于假基因位点(2)和四倍简并密码子位置(3)的系统发育比较,因此存在无法区分所比较物种的实际世代数的不确定性以及无法排除与自然选择相关的偏见的问题。在这里,我们提供了一组线虫突变积累线的直接无偏估计,其核突变率及其分子谱显示了比先前的间接估计高约十倍的突变率,并且插入量超过了缺失量。因为缺失占线虫假基因变异的主要模式(4,5),所以我们的观察结果表明自然选择可能在促进小的基因组大小方面具有重要意义,并挑战了假基因差异能够准确反映自发突变谱的普遍假设。

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