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Gene Family Size Conservation Is a Good Indicator of Evolutionary Rates

机译:基因家族大小的保守性是进化率的良好指标

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摘要

The evolution of duplicate genes has been a topic of broad interest. Here, we propose that the conservation of gene family size is a good indicator of the rate of sequence evolution and some other biological properties. By comparing the human–chimpanzee–macaque orthologous gene families with and without family size conservation, we demonstrate that genes with family size conservation evolve more slowly than those without family size conservation. Our results further demonstrate that both family expansion and contraction events may accelerate gene evolution, resulting in elevated evolutionary rates in the genes without family size conservation. In addition, we show that the duplicate genes with family size conservation evolve significantly more slowly than those without family size conservation. Interestingly, the median evolutionary rate of singletons falls in between those of the above two types of duplicate gene families. Our results thus suggest that the controversy on whether duplicate genes evolve more slowly than singletons can be resolved when family size conservation is taken into consideration. Furthermore, we also observe that duplicate genes with family size conservation have the highest level of gene expression/expression breadth, the highest proportion of essential genes, and the lowest gene compactness, followed by singletons and then by duplicate genes without family size conservation. Such a trend accords well with our observations of evolutionary rates. Our results thus point to the importance of family size conservation in the evolution of duplicate genes.
机译:重复基因的进化已成为广泛关注的话题。在这里,我们认为基因家族大小的保守性是序列进化速率和其他一些生物学特性的良好指示。通过比较具有和不具有家族大小保守性的人-黑猩猩-猕猴直系同源基因家族,我们证明了具有家族大小保守性的基因比没有家族大小保守的基因进化得更慢。我们的结果进一步证明,家族扩张和收缩事件都可能加速基因进化,从而导致基因进化速率提高而没有家族大小的保留。另外,我们显示具有家族大小保守性的重复基因比没有家族大小保守性的基因显着更慢地进化。有趣的是,单子的中值进化速率介于上述两种重复基因家族的进化速率之间。因此,我们的结果表明,考虑到家族大小的保守性,可以解决关于重复基因是否比单子进化得慢的争论。此外,我们还观察到,具有家族大小保留的重复基因具有最高水平的基因表达/表达广度,最高的必需基因比例和最低的基因紧密度,其次是单例,然后是没有家族大小保留的重复基因。这种趋势与我们对进化率的观察非常吻合。因此,我们的结果指出了在复制基因的进化中保持家族大小的重要性。

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