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复杂的突变和较弱的选择共同决定了苔藓植物线粒体基因组的密码子使用偏好。

Complex mutation and weak selection together determined the codon usage bias in bryophyte mitochondrial genomes.

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, Department of Biology, Nanjing University, Nanjing 210093, China.

出版信息

J Integr Plant Biol. 2010 Dec;52(12):1100-8. doi: 10.1111/j.1744-7909.2010.00998.x. Epub 2010 Oct 22.

Abstract

Mutation and selection are two major forces causing codon usage biases. How these two forces influence the codon usages in green plant mitochondrial genomes has not been well investigated. In the present study, we surveyed five bryophyte mitochondrial genomes to reveal their codon usage patterns as well as the determining forces. Three interesting findings were made. First, comparing to Chara vulgaris, an algal species sister to all extant land plants, bryophytes have more G, C-ending codon usages in their mitochondrial genes. This is consistent with the generally higher genomic GC content in bryophyte mitochondria, suggesting an increased mutational pressure toward GC. Second, as indicated by Wright's Nc-GC3s plot, mutation, not selection, is the major force affecting codon usages of bryophyte mitochondrial genes. However, the real mutational dynamics seem very complex. Context-dependent analysis indicated that nucleotide at the 2nd codon position would slightly affect synonymous codon choices. Finally, in bryophyte mitochondria, tRNA genes would apply a weak selection force to fine-tune the synonymous codon frequencies, as revealed by data of Ser4-Pro-Thr-Val families. In summary, complex mutation and weak selection together determined the codon usages in bryophyte mitochondrial genomes.

摘要

突变和选择是导致密码子使用偏好的两个主要力量。这两种力量如何影响绿色植物线粒体基因组中的密码子使用尚未得到很好的研究。在本研究中,我们调查了五个苔藓植物线粒体基因组,以揭示它们的密码子使用模式以及决定因素。有三个有趣的发现。首先,与藻类物种 Chara vulgaris 相比,它是所有现存陆地植物的姐妹物种,苔藓植物在线粒体基因中有更多的 G、C 结尾的密码子使用。这与苔藓植物线粒体中通常较高的基因组 GC 含量一致,表明 GC 方向的突变压力增加。其次,正如 Wright 的 Nc-GC3s 图所示,突变而不是选择是影响苔藓植物线粒体基因密码子使用的主要力量。然而,真实的突变动态似乎非常复杂。基于上下文的分析表明,第 2 位密码子位置的核苷酸会略微影响同义密码子的选择。最后,在苔藓植物线粒体中,tRNA 基因通过 Ser4-Pro-Thr-Val 家族的数据揭示了一种弱选择力量,可以微调同义密码子的频率。总之,复杂的突变和弱选择共同决定了苔藓植物线粒体基因组中的密码子使用。

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