首页> 外文期刊>Molecular biology and evolution >Codon Usage Bias in Animals: Disentangling the Effects o Natural Selection, Effective Population Size, and GC-Biased Gene Conversion
【24h】

Codon Usage Bias in Animals: Disentangling the Effects o Natural Selection, Effective Population Size, and GC-Biased Gene Conversion

机译:辅助动物用法偏见:解除自然选择,有效种群大小和GC偏置基因转换的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Selection on codon usage bias is well documented in a number of microorganisms. Whether codon usage is also generally shaped by natural selection in large organisms, despite their relatively small effective population size (N-e), is unclear. In animals, the population genetics of codon usage bias has only been studied in a handful of model organisms so far, and can be affected by confounding, nonadaptive processes such as GC-biased gene conversion and experimental artefacts. Using population transcriptomics data, we analyzed the relationship between codon usage, gene expression, allele frequency distribution, and recombination rate in 30 nonmodel species of animals, each from a different family, covering a wide range of effective population sizes. We disentangled the effects of translational selection and GC-biased gene conversion on codon usage by separately analyzing GC-conservative and GC-changing mutations. We report evidence for effective translational selection on codon usage in large-N-e species of animals, but not in small-N-e ones, in agreement with the nearly neutral theory of molecular evolution. C- and T-ending codons tend to be preferred over synonymous G- and A-ending ones, for reasons that remain to be determined. In contrast, we uncovered a conspicuous effect of GC-biased gene conversion, which is widespread in animals and the main force determining the fate of AT &--& GC mutations. Intriguingly, the strength of its effect was uncorrelated with N-e.
机译:关于密码子使用偏差的选择在许多微生物中有很好的记录。无论是密码子使用也是通过大生物体的自然选择而形成的,尽管它们的有效种群尺寸(N-E)相对较小,但尚不清楚。在动物中,迄今为止仅在少数模型生物中进行了密码子使用偏差的群体遗传学,并且可以受到混淆,非接种过程,例如GC偏置基因转化和实验艺术品的影响。使用人口转录组织数据,我们分析了密码子使用,基因表达,等位基因频率分布和30个非典范动物的重组率之间的关系,每种动物,每种动物,每种动物,每种动物,覆盖各种有效的人口尺寸。通过分别分析GC保守和GC变化突变,我们解除了翻译选择和GC偏置基因转化对密码子使用的影响。我们报告了关于在大型动物种类中的密码子使用的有效翻译选择的证据,但不与小于N-E的使用,同意与几乎中立的分子演进理论一致。由于剩余待确定的原因,C-和T端密码子往往优选使用同义G-和结束的密码子。相比之下,我们发现了GC偏置基因转化的显着效果,其在动物中普遍存在的动物和确定AT&amp的命运的主力; LT; - & GC突变。有趣的是,其效果的强度与N-E不相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号