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Evolutionary coupling between the deleteriousness of gene mutations and the amount of non-coding sequences

机译:基因突变的有害性与非编码序列数量之间的进化偶联

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The phenotypic effects of random mutations depend on both the architecture of the genome and the gene-trait relationships. Both levels thus play a key role in the mutational variability of the phenotype, and hence in the long-term evolutionary success of the lineage. Here, by simulating the evolution of organisms with flexible genomes, we show that the need for an appropriate phenotypic variability induces a relationship between the deleteriousness of gene mutations and the quantity of non-coding sequences maintained in the genome. The more deleterious the gene mutations, the shorter the intergenic sequences. Indeed, in a shorter genome, fewer genes are affected by rearrangements (duplications, deletions, inversions, translocations) at each replication, which compensates for the higher impact of each gene mutation. This spontaneous adjustment of genome structure allows the organisms to retain the same average fitness loss per replication, despite the higher impact of single gene mutations. These results show how evolution can generate unexpected couplings between distinct organization levels. (c) 2006 Elsevier Ltd. All rights reserved.
机译:随机突变的表型效应取决于基因组的结构和基因-性状关系。因此,这两个水平在表型的突变变异性中都起着关键作用,因此在谱系的长期进化成功中也起着关键作用。在这里,通过模拟具有灵活基因组的生物的进化,我们表明对适当表型变异性的需求诱导了基因突变的有害性与基因组中维持的非编码序列数量之间的关系。基因突变越有害,基因间序列越短。实际上,在较短的基因组中,较少的基因在每次复制时受到重排(重复,缺失,倒位,易位)的影响,这补偿了每种基因突变的较高影响。尽管单个基因突变的影响更大,但这种基因组结构的自发调节使生物体每次复制仍保持相同的平均适应度损失。这些结果说明了演化如何在不同的组织级别之间产生意外的耦合。 (c)2006 Elsevier Ltd.保留所有权利。

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