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首页> 外文期刊>Journal of Molecular Evolution >Codon bias and noncoding GC content correlate negatively with recombination rate on the Drosophila X chromosome
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Codon bias and noncoding GC content correlate negatively with recombination rate on the Drosophila X chromosome

机译:密码子偏倚和非编码GC含量与果蝇X染色体上的重组率负相关

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摘要

The patterns and processes of molecular evolution may differ between the X chromosome and the autosomes in Drosophila melanogaster. This may in part be due to differences in the effective population size between the two chromosome sets and in part to the hemizygosity of the X chromosome in Drosophila males. These and other factors may lead to differences both in the gene complements of the X and the autosomes and in the properties of the genes residing on those chromosomes. Here we show that codon bias and recombination rate are correlated strongly and negatively on the X chromosome, and that this correlation cannot be explained by indirect relationships with other known determinants of codon bias. This is in dramatic contrast to the weak positive correlation found on the autosomes. We explored possible explanations for these patterns, which required a comprehensive analysis of the relationships among multiple genetic properties such as protein length and expression level. This analysis highlights conserved features of coding sequence evolution on the X and the autosomes and illuminates interesting differences between these two chromosome sets.
机译:果蝇的X染色体和常染色体之间的分子进化模式和过程可能不同。这可能部分归因于两个染色体组之间有效种群大小的差异,部分归因于果蝇雄性X染色体的半合子性。这些因素和其他因素可能会导致X和常染色体的基因互补以及驻留在那些染色体上的基因的特性产生差异。在这里,我们显示密码子偏倚和重组率在X染色体上呈​​强相关和负相关,并且这种相关性无法通过与其他已知的密码子偏倚决定因素的间接关系来解释。这与常染色体上弱的正相关性形成了鲜明的对比。我们探索了这些模式的可能解释,要求对多种遗传特性(例如蛋白质长度和表达水平)之间的关系进行全面分析。该分析突出了X和常染色体上编码序列进化的保守特征,并阐明了这两个染色体组之间有趣的差异。

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