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Male-biased mutation, sex linkage, and the rate of adaptive evolution

机译:男性偏见的突变,性别联系和适应进化的速率

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An interaction between sex-linked inheritance and sex-biased mutation rates may affect the rate of adaptive evolution. Males have much higher mutation rates than females in several vertebrate and plant taxa. When evolutionary rates are limited by the supply of favorable new mutations, then genes will evolve faster when located on sex chromosomes that spend more time in males. For mutations with additive effects, Y-linked genes evolve fastest, followed by Z-linked genes, autosomal genes, X-linked genes, and finally W-linked and cytoplasmic genes. This ordering can change when mutations show dominance. The predicted differences in substitution rates may be detectable at the molecular level. Male-biased mutation could cause adaptive changes to accumulate more readily on certain kinds of chromosomes and favor animals with Z-W sex determination to have rapidly evolving male sexual displays. [References: 25]
机译:性连锁遗传与偏性突变率之间的相互作用可能会影响适应性进化的速率。在几个脊椎动物和植物类群中,雄性的突变率比雌性高。如果进化速度受到有利的新突变的限制,那么当基因位于性染色体上时,基因将进化得更快,而性染色体在男性身上花费的时间更多。对于具有加性效应的突变,Y连锁基因发展最快,其次是Z连锁基因,常染色体基因,X连锁基因,最后是W连锁和胞质基因。当突变显示出优势时,这种顺序可以改变。在分子水平上可以检测到取代率的预测差异。男性偏见的突变可能导致适应性变化更容易在某些种类的染色体上积累,并有利于具有Z-W性别决心的动物具有迅速发展的男性有性显示。 [参考:25]

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