Song Hui, Liu Jing, Song Qiuyan, Zhang Qingping, Tian Pei, Nan Zhibiao
State Key Laboratory of Grassland Agro-ecosystems, College of Pastoral Agriculture Science and Technology, Lanzhou UniversityLanzhou, China.
Front Microbiol. 2017 Jul 27;8:1419. doi: 10.3389/fmicb.2017.01419. eCollection 2017.
Codon usage bias plays an important role in shaping genomes and genes in unicellular species and multicellular species. Here, we first analyzed codon usage bias in seven species and their peramine-coding genes. Our results showed that both natural selection and mutation pressure played a role in forming codon usage bias in seven species. All seven species contained a peramine-coding gene cluster. Interestingly, codon usage bias of peramine-coding genes were not affected by natural selection or mutation pressure. There were 13 codons more frequently found in genome sequences, peramine-coding gene clusters and orthologous peramine-coding genes, all of which had a bias to end with a C nucleotide. In the seven genomes analyzed, codon usage was biased in highly expressed coding sequences (CDSs) with shorter length and higher GC content. Genes in the peramine-coding gene cluster had higher GC content at the third nucleotide position of the codon, and highly expressed genes had higher GC content at the second position. In orthologous peramine-coding CDSs, high expression level was not significantly correlated with CDS length and GC content. Analysis of selection pressure identified that the genes orthologous to peramine genes were under purifying selection. There were no differences in codon usage bias and selection pressure between peramine product genes and non-functional peramine product genes. Our results provide insights into understanding codon evolution in species.
密码子使用偏好性在单细胞和多细胞物种的基因组和基因塑造过程中发挥着重要作用。在此,我们首先分析了七个物种及其多杀菌素编码基因中的密码子使用偏好性。我们的结果表明,自然选择和突变压力在七个物种密码子使用偏好性的形成过程中均发挥了作用。所有七个物种都包含一个多杀菌素编码基因簇。有趣的是,多杀菌素编码基因的密码子使用偏好性不受自然选择或突变压力的影响。在基因组序列、多杀菌素编码基因簇和直系同源多杀菌素编码基因中,有13个密码子出现频率更高,所有这些密码子都倾向于以C核苷酸结尾。在所分析的七个基因组中,密码子使用偏好于长度较短且GC含量较高的高表达编码序列(CDS)。多杀菌素编码基因簇中的基因在密码子的第三个核苷酸位置具有较高的GC含量,而高表达基因在第二个位置具有较高的GC含量。在直系同源多杀菌素编码CDS中,高表达水平与CDS长度和GC含量无显著相关性。选择压力分析表明,与多杀菌素基因直系同源的基因受到纯化选择。多杀菌素产物基因和无功能多杀菌素产物基因在密码子使用偏好性和选择压力方面没有差异。我们的结果为理解物种中的密码子进化提供了见解。