New insights into the interplay between codon bias determinants in plants

S. Camiolo, S. Melito, A. Porceddu
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引用次数: 28

Abstract

Codon bias is the non-random use of synonymous codons, a phenomenon that has been observed in species as diverse as bacteria, plants and mammals. The preferential use of particular synonymous codons may reflect neutral mechanisms (e.g. mutational bias, G|C-biased gene conversion, genetic drift) and/or selection for mRNA stability, translational efficiency and accuracy. The extent to which these different factors influence codon usage is unknown, so we dissected the contribution of mutational bias and selection towards codon bias in genes from 15 eudicots, 4 monocots and 2 mosses. We analysed the frequency of mononucleotides, dinucleotides and trinucleotides and investigated whether the compositional genomic background could account for the observed codon usage profiles. Neutral forces such as mutational pressure and G|C-biased gene conversion appeared to underlie most of the observed codon bias, although there was also evidence for the selection of optimal translational efficiency and mRNA folding. Our data confirmed the compositional differences between monocots and dicots, with the former featuring in general a lower background compositional bias but a higher overall codon bias.
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植物密码子偏向决定因素之间相互作用的新见解
密码子偏差是指同义密码子的非随机使用,这种现象在细菌、植物和哺乳动物等多种物种中都有观察到。特定同义密码子的优先使用可能反映了中性机制(例如突变偏倚、G / c偏倚基因转换、遗传漂变)和/或mRNA稳定性、翻译效率和准确性的选择。这些不同的因素在多大程度上影响密码子的使用尚不清楚,因此我们分析了突变偏倚和选择对密码子偏倚的贡献,这些基因来自15个单子科植物、4个单子科植物和2个苔藓植物。我们分析了单核苷酸、二核苷酸和三核苷酸的频率,并研究了组成基因组背景是否可以解释所观察到的密码子使用概况。中性力量,如突变压力和G| c偏倚基因转换似乎是大多数观察到的密码子偏倚的基础,尽管也有证据表明选择最佳的翻译效率和mRNA折叠。我们的数据证实了单子型和双子型之间的成分差异,单子型的背景成分偏差一般较低,但总体密码子偏差较高。
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