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五种芒属植物及其近缘物种叶绿体基因组密码子使用模式的比较分析

Comparative analysis of codon usage patterns in chloroplast genomes of five Miscanthus species and related species.

作者信息

Sheng Jiajing, She Xuan, Liu Xiaoyu, Wang Jia, Hu Zhongli

机构信息

Nantong University, School of Life Sciences, Jiangsu Key Laboratory of Neuroregeneration, Co-innovation Center of Neuroregeneration, Nantong, China.

Wuhan University, Wuhan, China.

出版信息

PeerJ. 2021 Sep 23;9:e12173. doi: 10.7717/peerj.12173. eCollection 2021.

Abstract

Miscanthus is not only a perennial fiber biomass crop, but also valuable breeding resource for its low-nutrient requirements, photosynthetic efficiency and strong adaptability to environment. In the present study, the codon usage patterns of five different plants and other two related species were systematically analyzed. The results indicated that the cp genomes of the seven representative species were preference to A/T bases and A/T-ending codons. In addition, 21 common high-frequency codons and 4-11 optimal codons were detected in the seven chloroplast genomes. The results of ENc-plot, PR2-plot and neutrality analysis revealed the codon usage patterns of the seven chloroplast genomes are influenced by multiple factors, in which nature selection is the main influencing factor. Comparative analysis of the codon usage frequencies between the seven representative species and four model organisms suggested that , and could be considered as preferential appropriate exogenous expression receptors. These results might not only provide important reference information for evolutionary analysis, but also shed light on the way to improve the expression efficiency of exogenous gene in transgenic research based on codon optimization.

摘要

芒草不仅是一种多年生纤维生物质作物,而且因其低养分需求、光合效率和对环境的强适应性而成为宝贵的育种资源。在本研究中,系统分析了五种不同植物和其他两个相关物种的密码子使用模式。结果表明,七个代表性物种的叶绿体基因组偏好A/T碱基和以A/T结尾的密码子。此外,在七个叶绿体基因组中检测到21个常见的高频密码子和4-11个最优密码子。ENC图、PR2图和中性分析结果表明,七个叶绿体基因组的密码子使用模式受多种因素影响,其中自然选择是主要影响因素。七个代表性物种与四种模式生物之间密码子使用频率的比较分析表明, 、 和 可被视为优先合适的外源表达受体。这些结果不仅可能为进化分析提供重要参考信息,还可能为基于密码子优化提高转基因研究中外源基因表达效率的方法提供启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16f4/8466072/4d1197e84dd0/peerj-09-12173-g001.jpg

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