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A Genetic Optimization Approach for Isolating Translational Efficiency Bias

机译:消除翻译效率偏倚的遗传优化方法

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摘要

The study of codon usage bias is an important research area that contributes to our understanding of molecular evolution, phylogenetic relationships, respiratory lifestyle, and other characteristics. Translational efficiency bias is perhaps the most well-studied codon usage bias, as it is frequently utilized to predict relative protein expression levels. We present a novel approach to isolating translational efficiency bias in microbial genomes. There are several existent methods for isolating translational efficiency bias. Previous approaches are susceptible to the confounding influences of other potentially dominant biases. Additionally, existing approaches to identifying translational efficiency bias generally require both genomic sequence information and prior knowledge of a set of highly expressed genes. This novel approach provides more accurate results from sequence information alone by resisting the confounding effects of other biases. We validate this increase in accuracy in isolating translational efficiency bias on 10 microbial genomes, five of which have proven particularly difficult for existing approaches due to the presence of strong confounding biases.
机译:密码子使用偏倚的研究是重要的研究领域,有助于我们理解分子进化,系统发育关系,呼吸生活方式和其他特征。翻译效率偏倚可能是研究最深入的密码子使用偏倚,因为它经常被用来预测相对蛋白质表达水平。我们提出了一种隔离微生物基因组中翻译效率偏倚的新颖方法。存在几种隔离翻译效率偏差的方法。先前的方法容易受到其他潜在主导偏差的混杂影响。另外,用于识别翻译效率偏倚的现有方法通常需要基因组序列信息和一组高度表达的基因的先验知识。通过抵抗其他偏差的混杂影响,这种新颖的方法仅从序列信息中提供了更准确的结果。我们验证了在10个微生物基因组上分离翻译效率偏倚的准确性的提高,由于存在强烈的混杂偏倚,事实证明其中五个对现有方法特别困难。

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