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纤毛虫大核基因组中的密码子使用偏好性分析

Codon Usage Bias Analysis in Macronuclear Genomes of Ciliated Protozoa.

作者信息

Fu Yu, Liang Fasheng, Li Congjun, Warren Alan, Shin Mann Kyoon, Li Lifang

机构信息

Laboratory of Marine Protozoan Biodiversity and Evolution, Marine College, Shandong University, Weihai 264209, China.

Department of Life Sciences, Natural History Museum, London SW7 5BD, UK.

出版信息

Microorganisms. 2023 Jul 18;11(7):1833. doi: 10.3390/microorganisms11071833.

Abstract

Ciliated protozoa (ciliates) are unicellular eukaryotes, several of which are important model organisms for molecular biology research. Analyses of codon usage bias (CUB) of the macronuclear (MAC) genome of ciliates can promote a better understanding of the genetic mode and evolutionary history of these organisms and help optimize codons to improve gene editing efficiency in model ciliates. In this study, the following indices were calculated: the guanine-cytosine (GC) content, the frequency of the nucleotides at the third position of codons (T3, C3, A3, G3), the effective number of codons (ENc), GC content at the 3rd position of synonymous codons (GC3s), and the relative synonymous codon usage (RSCU). Parity rule 2 plot analysis, Neutrality plot analysis, ENc plot analysis, and correlation analysis were employed to explore the main influencing factors of CUB. The results showed that the GC content in the MAC genomes of each of 21 ciliate species, the genomes of which were relatively complete, was lower than 50%, and the base compositions of GC and GC3s were markedly distinct. Synonymous codon analysis revealed that the codons in most of the 21 ciliates ended with A or T and four codons were the general putative optimal codons. Collectively, our results indicated that most of the ciliates investigated preferred using the codons with anof AT-ending and that codon usage bias was affected by gene mutation and natural selection.

摘要

纤毛原生动物(纤毛虫)是单细胞真核生物,其中几种是分子生物学研究的重要模式生物。分析纤毛虫大核(MAC)基因组的密码子使用偏好(CUB),有助于更好地理解这些生物的遗传模式和进化历史,并有助于优化密码子以提高模式纤毛虫中的基因编辑效率。在本研究中,计算了以下指标:鸟嘌呤-胞嘧啶(GC)含量、密码子第三位核苷酸的频率(T3、C3、A3、G3)、有效密码子数(ENc)、同义密码子第三位的GC含量(GC3s)以及相对同义密码子使用情况(RSCU)。采用奇偶规则2图分析、中性图分析、ENc图分析和相关性分析来探究CUB的主要影响因素。结果表明,21种基因组相对完整的纤毛虫的MAC基因组中的GC含量均低于50%,且GC和GC3s的碱基组成明显不同。同义密码子分析表明,21种纤毛虫中的大多数密码子以A或T结尾,且有四个密码子是一般公认的最优密码子。总体而言,我们的结果表明,大多数被研究的纤毛虫倾向于使用以AT结尾的密码子,且密码子使用偏好受基因突变和自然选择的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/895b/10384029/72e8ab531cf9/microorganisms-11-01833-g001.jpg

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