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Gene length and codon usage bias in Drosophila melanogaster, Saccharomyces cerevisiae and Escherichia coli

机译:果蝇,酿酒酵母和大肠杆菌中的基因长度和密码子使用偏倚

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The relationship between gene length and synonymous codon usage bias was investigated in Drosophila melanogaster, Escherichia coli and saccharomyces cerevisiae. Simulation studies indicate that the correlations observed in the three organisms are unlikely to be due to sampling errors or any potential bias in the methods used to measures codon usage bias. The correlation was significantly positive in E.coli genes, whereas negative correlations were obtained for D.melanogaster and S.cerevisiae genes. When only ribosomal protein genes were used, whose expression levels are assumed to be similar, E.coli and S.cerevisiae showed significantly positive correlations. For the two eukaryotes, the distribution of effective number of codons was different in short genes (300-500 bp) compared with longer genes; this was not observed in E.coli. Both positive and negative correlations can be explained by translational selection. Energetically costly longer genes have higher codon usage bias to maximize translational efficiency. Selection may also be acting to reduce the size of highly expressed proteins, and the effect is particularly pronounced in eukaryotes. The different relationships between codon usage bias and gene length observed in prokaryotes and eukaryotes may be the consequence of these different types of selection.
机译:在果蝇,大肠杆菌和啤酒酵母中研究了基因长度与同义密码子使用偏倚之​​间的关系。模拟研究表明,在三种生物中观察到的相关性不太可能归因于采样错误或用于测量密码子使用偏倚的方法中的任何潜在偏倚。大肠杆菌基因中的相关性显着正相关,而黑腹果蝇和啤酒糖酵母基因则具有负相关性。当仅使用核糖体蛋白基因时,假定其表达水平相似,大肠杆菌和酿酒酵母显示出显着的正相关。对于两种真核生物,短基因(300-500 bp)与长基因相比,有效密码子的分布有所不同。这在大肠杆菌中未观察到。正相关和负相关都可以通过翻译选择来解释。耗费能量的较长基因具有较高的密码子使用偏倚,以最大程度地提高翻译效率。选择也可以起到减少高表达蛋白质大小的作用,并且这种作用在真核生物中特别明显。在原核生物和真核生物中观察到的密码子偏倚和基因长度之间的不同关系可能是这些不同类型选择的结果。

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