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Understanding Neutral Genomic Molecular Clocks

机译:了解中性基因组分子钟

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The molecular clock hypothesis is a central concept in molecular evolution and has inspired much research into why evolutionary rates vary between and within genomes. In the age of modern comparative genomics, understanding the neutral genomic molecular clock occupies a critical place. It has been demonstrated that molecular clocks run differently between closely related species, and generation time is an important determinant of lineage specific molecular clocks. Moreover, it has been repeatedly shown that regional molecular clocks vary even within a genome, which should be taken into account when measuring evolutionary constraint of specific genomic regions. With the availability of a large amount of genomic sequence data, new insights into the patterns and causes of variation in molecular clocks are emerging. In particular, factors such as nucleotide composition, molecular origins of mutations, weak selection and recombination rates are important determinants of neutral genomic molecular clocks.
机译:分子时钟假说是分子进化中的一个中心概念,它激发了许多研究为什么进化速率在基因组之间和内部发生变化。在现代比较基因组学时代,了解中性基因组分子钟占据着至关重要的位置。已经证明分子时钟在密切相关的物种之间运行不同,并且生成时间是谱系特异性分子时钟的重要决定因素。而且,已经反复表明,即使在基因组内区域分子时钟也不同,在测量特定基因组区域的进化限制时应考虑到这一点。随着大量基因组序列数据的可用性,对分子时钟变化的模式和原因的新见解正在涌现。特别地,诸如核苷酸组成,突变的分子起源,弱选择和重组率等因素是中性基因组分子钟的重要决定因素。

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