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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Molecular Evolution Between Drosophila melanogaster and D. simulans Reduced Codon Bias, Faster Rates of Amino Acid Substitution, and Larger Proteins in D. melanogaster
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Molecular Evolution Between Drosophila melanogaster and D. simulans Reduced Codon Bias, Faster Rates of Amino Acid Substitution, and Larger Proteins in D. melanogaster

机译:果蝇和D. simulans之间的分子进化减少了D. melanogaster的密码子偏倚,更快的氨基酸取代率和更大的蛋白质。

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Both natural selection and mutational biases contribute to variation in codon usage bias within Drosophila species. This study addresses the cause of codon bias differences between the sibling species, Drosophila melanogaster and D. simulans . Under a model of mutation-selection-drift, variation in mutational processes between species predicts greater base composition differences in neutrally evolving regions than in highly biased genes. Variation in selection intensity, however, predicts larger base composition differences in highly biased loci. Greater differences in the G+C content of 34 coding regions than 46 intron sequences between D. melanogaster and D. simulans suggest that D. melanogaster has undergone a reduction in selection intensity for codon bias. Computer simulations suggest at least a fivefold reduction in Nes at silent sites in this lineage. Other classes of molecular change show lineage effects between these species. Rates of amino acid substitution are higher in the D. melanogaster lineage than in D. simulans in 14 genes for which outgroup sequences are available. Surprisingly, protein sizes are larger in D. melanogaster than in D. simulans in the 34 genes compared between the two species. A substantial fraction of silent, replacement, and insertion/deletion mutations in coding regions may be weakly selected in Drosophila.
机译:自然选择和突变偏见都导致果蝇物种内密码子使用偏见的变化。这项研究解决了同胞物种果蝇(Drosophila melanogaster)和拟杆菌D. simulans之间密码子偏倚差异的原因。在突变选择漂移模型下,物种间突变过程的变化预示着中性进化区的碱基组成差异要大于高度偏向基因。然而,选择强度的变化预测高度偏向基因座中碱基组成的差异更大。 D. melanogaster和D. simulans之间的34个编码区的G + C含量差异大于46个内含子序列,这表明D. melanogaster的密码子偏倚选择强度降低。计算机模拟表明,该谱系中沉默部位的Nes至少降低了五倍。其他类别的分子变化显示了这些物种之间的谱系效应。在有外序列可用的14个基因中,D。melanogaster谱系中的氨基酸取代率高于D. simulans。出乎意料的是,在这两个物种之间的34个基因中,黑腹果蝇中的蛋白质大小要比黑果蝇中的更大。在果蝇中,可能很少选择编码区的沉默,置换和插入/缺失突变的大部分。

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