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首页> 外文期刊>Molecular Biology and Evolution >Inferring Divergence of Context-Dependent Substitution Rates in Drosophila Genomes with Applications to Comparative Genomics
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Inferring Divergence of Context-Dependent Substitution Rates in Drosophila Genomes with Applications to Comparative Genomics

机译:推断果蝇基因组中上下文相关的替代率的差异及其在比较基因组学中的应用

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Nucleotide substitution is a major evolutionary driving force that can incrementally and stochastically give rise to broad divergence patterns among species. The substitution process at each genomic position is frequently modeled independently of the other positions, although complex interactions between nearby bases are known to significantly affect mutation rates. Here, we study the evolution of 12 fly genomes using new algorithms for accurate inference of parameter-rich substitution models. By comparing models between lineages, we reveal the evolutionary histories of substitution rates at different flanking nucleotide contexts. We demonstrate these driving forces of molecular evolution to be constantly changing, suggesting that neutral drift of mutation rates is an important factor in the evolution of genomes and their sequence composition. This observation is used to develop a scalable approach for parameter-rich comparative genomics. By screening short DNA sequences, we demonstrate how homeoboxes and other transcription factor binding motifs are highly conserved based on our parameter-rich models but not according to standard conservation assays. With the increasing availability of genome sequences, rich substitution models become an attractive and practical approach for evolutionary analysis in general and comparative genomics in particular.
机译:核苷酸取代是一种主要的进化驱动力,可以逐渐和随机地引起物种之间的广泛差异。尽管已知附近碱基之间的复杂相互作用会显着影响突变率,但通常会独立于其他位置对每个基因组位置的取代过程进行建模。在这里,我们使用新算法研究了12个果蝇基因组的进化,以精确推断出参数丰富的替代模型。通过比较谱系之间的模型,我们揭示了不同侧翼核苷酸环境下取代率的进化历史。我们证明了分子进化的这些驱动力是不断变化的,表明突变率的中性漂移是基因组及其序列组成的进化中的重要因素。该观察结果用于为参数丰富的比较基因组学开发可扩展的方法。通过筛选短的DNA序列,我们证明了基于我们丰富的参数模型而不是根据标准的保守性检测方法,同源盒和其他转录因子结合基序是如何高度保守的。随着基因组序列可用性的提高,丰富的取代模型成为一般和比较基因组进化分析的一种有吸引力且实用的方法。

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