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蒺藜草属叶绿体基因组密码子使用模式和遗传多样性。

Codon usage pattern and genetic diversity in chloroplast genomes of Panicum species.

机构信息

Laboratory for Biodiversity Science, Department of Biomedical Engineering, School of Electronics Information Engineering, Xi'An Technological University, Xi'An, China.

Laboratory for Biodiversity Science, Department of Biomedical Engineering, School of Electronics Information Engineering, Xi'An Technological University, Xi'An, China.

出版信息

Gene. 2021 Nov 15;802:145866. doi: 10.1016/j.gene.2021.145866. Epub 2021 Aug 2.

Abstract

Exploring the molecular identities and the genetic diversity of a plant species is crucial in figuring out the evolutionary pressure of genes as well as in molecular breeding application. Nineteen chloroplast genomes of Panicum species in the National Center for Biotechnology Information database were downloaded and analyzed. The base composition, the effective number of codons, the relative synonymous codon usage, the codon bias index and the codon adaptation index of all genes in all chloroplast genomes, as well as the correlation coefficient among them, were calculated and discussed. The correspondence analysis and the clustering characteristics among nineteen genomes base on the relative synonymous codon usage values of nineteen chloroplast genomes were calculated and analyzed. In order to figuring out the evolutionary diversity of certain genes, the codon usage pattern of forty-one typical genes were separately counted and compared. Summations of their standard deviations were considered to evaluate their genetic diversities. The results of codon usage pattern showed that all genes were obvious AU-rich ones in chloroplast genomes of Panicum species, revealing that the natural selection was the main factor that influenced their evolutionary process. The correspondence and clustering analysis among nineteen chloroplast genomes showed that the overall evolutionary differences among them were not significant. However, the analysis on the genetic diversity of tyical genes showed that the degrees of diversity are different, and that the shorter sequences are more prone to instability. These findings would improve our understanding on the evolution of chloroplast genomes of Panicum species and be useful for further study on their evolutionary phenomenon.

摘要

探索植物物种的分子特征和遗传多样性对于了解基因的进化压力以及在分子育种应用中至关重要。从国家生物技术信息中心数据库中下载并分析了 19 个 Panicum 种的叶绿体基因组。计算并讨论了所有叶绿体基因组中所有基因的碱基组成、有效密码子数、相对同义密码子使用、密码子偏性指数和密码子适应指数,以及它们之间的相关系数。基于 19 个叶绿体基因组的相对同义密码子使用值,计算并分析了 19 个基因组之间的对应分析和聚类特征。为了确定某些基因的进化多样性,分别计算和比较了 41 个典型基因的密码子使用模式。它们的标准偏差之和被用来评估它们的遗传多样性。密码子使用模式的结果表明,在 Panicum 种的叶绿体基因组中,所有基因都是明显的 AU 丰富型,这表明自然选择是影响其进化过程的主要因素。19 个叶绿体基因组的对应和聚类分析表明,它们之间的整体进化差异不显著。然而,对典型基因遗传多样性的分析表明,多样性程度不同,较短的序列更容易不稳定。这些发现将提高我们对 Panicum 种叶绿体基因组进化的理解,并有助于进一步研究其进化现象。

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