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Selection at the amino acid level can influence synonymous codon usage: implications for the study of codon adaptation in plastid genes.

机译:在氨基酸水平上的选择会影响同义密码子的使用:对质体基因密码子适应性研究的意义。

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摘要

A previously employed method that uses the composition of noncoding DNA as the basis of a test for selection between synonymous codons in plastid genes is reevaluated. The test requires the assumption that in the absence of selective differences between synonymous codons the composition of silent sites in coding sequences will match the composition of noncoding sites. It is demonstrated here that this assumption is not necessarily true and, more generally, that using compositional properties to draw inferences about selection on silent changes in coding sequences is much more problematic than commonly assumed. This is so because selection on nonsynonymous changes can influence the composition of synonymous sites (i.e., codon usage) in a complex manner, meaning that the composition biases of different silent sites, including neutral noncoding DNA, are not comparable. These findings also draw into question the commonly utilized method of investigating how selection to increase translation accuracy influences codon usage. The work then focuses on implications for studies that assess codon adaptation, which is selection on codon usage to enhance translation rate, in plastid genes. A new test that does not require the use of noncoding DNA is proposed and applied. The results of this test suggest that far fewer plastid genes display codon adaptation than previously thought.
机译:重新评估了以前使用的方法,该方法使用非编码DNA的组成作为质体基因中同义密码子之间选择的测试基础。该测试要求假设在同义密码子之间不存在选择性差异的情况下,编码序列中沉默位点的组成将与非编码位点的组成匹配。这里证明了这种假设不一定是正确的,并且更一般地,使用组成特性来得出关于对编码序列的无声变化进行选择的推断比通常假设的问题要严重得多。之所以如此,是因为对非同义变化的选择会以复杂的方式影响同义位点的组成(即密码子使用),这意味着不同的沉默位点(包括中性非编码DNA)的组成偏差是不可比的。这些发现也使人们对调查提高翻译准确性的选择如何影响密码子使用的常用方法产生疑问。然后,该工作着重于评估质体基因中密码子适应性的研究的意义,密码子适应性是选择密码子以提高翻译速率的选择。提出并应用了一种不需要使用非编码DNA的新测试方法。该测试的结果表明,质体基因显示的密码子适应性比以前想象的要少得多。

著录项

  • 期刊名称 Genetics
  • 作者

    B R Morton;

  • 作者单位
  • 年(卷),期 2001(159),1
  • 年度 2001
  • 页码 347–358
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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