Euphorbiaceae plants are important as suppliers of biodiesel. In the current study, the codon usage patterns and sources of variance in chloroplast genome sequences of six different Euphorbiaceae plant species have been systematically analyzed. Our results revealed that the chloroplast genomes of six Euphorbiaceae plant species were biased towards A/T bases and A/T-ending codons, followed by detection of 17 identical high-frequency codons including GCT, TGT, GAT, GAA, TTT, GGA, CAT, AAA, TTA, AAT, CCT, CAA, AGA, TCT, ACT, TAT and TAA. It was found that mutation pressure was a minor factor affecting the variation of codon usage, however, natural selection played a significant role. Comparative analysis of codon usage frequencies of six Euphorbiaceae plant species with four model organisms reflected that Arabidopsis thaliana, Populus trichocarpa, and Saccharomyces cerevisiae should be considered as suitable exogenous expression receptor systems for chloroplast genes of six Euphorbiaceae plant species. Furthermore, it is optimal to choose Saccharomyces cerevisiae as the exogenous expression receptor. The outcome of the present study might provide important reference information for further understanding the codon usage patterns of chloroplast genomes in other plant species.

译文

大戟科植物作为生物柴油的供应商很重要。在当前的研究中,已经对六种不同大戟科植物物种的叶绿体基因组序列的密码子使用模式和变异来源进行了系统分析。我们的结果表明,六个大戟科植物的叶绿体基因组偏向A/T碱基和A/T结尾密码子,随后检测到17个相同的高频密码子,包括GCT,TGT,GAT,GAA,TTT,GGA,CAT,AAA,TTA,AAT,CCT,CAA、AGA、TCT、ACT、TAT和TAA。发现突变压力是影响密码子使用变化的次要因素,但是自然选择起着重要作用。6种大戟科植物与4种模式生物密码子使用频率的比较分析表明,拟南芥,毛白杨和酿酒酵母应被视为六种大戟科植物叶绿体基因的合适外源表达受体系统。此外,选择酿酒酵母作为外源表达受体是最佳的。本研究的结果可能为进一步了解其他植物物种中叶绿体基因组的密码子使用模式提供重要的参考信息。

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