4种霸王属植物叶绿体基因组密码子偏好性分析
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塔里木大学生命科学与技术学院

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国家自然基金地区基金(31660048)


Analysis of Codon Preference in Chloroplast Genomes of Four Zygophyllum Species
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    摘要:

    【目的】确定4种霸王属植物叶绿体基因组密码子的使用模式及其成因。【方法】利用Codon W、Emboss等对叶绿体基因组筛选出40条基因编码序列密码进行ENC-plot、中性绘图、最优密码子等分析。【结果】4种霸王属植物叶绿体基因组密码子的GC含量依次为GC1>GC2>GC3,ENC值平均值都大于35,CAI均为0.17,其基因表达水平较低,且密码子使用偏好性较弱;中性绘图分析、ENC-plot及PR2-plot分析认为4个物种叶绿体基因组密码子的偏好性主要受自然选择作用的影响;最优密码子分析发现豆型霸王、长梗霸王、霸王和喀什霸王最优密码子分别为19、13、14和14个,其中4个为共有密码子且偏好以A/U收尾。【结论】本研究为4种霸王属植物的密码子碱基多以A\U结尾,偏好性较弱且主要影响因素为自然选择,鉴定了4个共有最优密码子;这对于深入理解霸王属植物的密码子优化、偏好机制研究及遗传进化关系提供科学依据。

    Abstract:

    [Objective]In order to analyze the codon usage bias of the chloroplast genome of four Zygophyllum species, the study analyzed the codon composition and codon usage bias of 40 selected gene-coding sequences and identified the optimal codons.[Methods] The parity preference (PR2-plot) analysis, effective number of codons (NEC-plot), neutrality plot and RSCU cluster analysis of 40 genes from four Zygophyllum species were carried out using CodonW 1.4.2 and Emboss software in this study. [Results]The codon usage patterns in four Zygophyllum species plastomes were similar, and the GC content of codon was followed by GC1> GC2> GC3, the average ENC values were more than 35, and the CAI was 0.17, indicating the chloroplast genome gene expression level of Zygophyllum species was low and a weak codon preference. The results of neutral mapping analysis, ENC-plot selection and PR2-plot analysis showed that the codon usage pattern was affected by natural selection, which played a dominant role. RSCU cluster analysis showed that Z. fabago, Z. obliquum, Z.xanthoxylum and Z. kaschgaricum had 19, 13,14 and 14 optimal codons. By constructing the high and low gene expression library of the target genes, a total of four optimal genes were finally selected using totally the A\U ending.[Conclusion] The codon bases of chloroplast genome from four Zygophyllum species mostly ended with A\U. The codon usage bias of chloroplast genome have a weak codon preference, and be in?uenced by base mutations . Four optimal codons were identi?ed in this study, and the presence of few optimal codons may better understood the codon optimization, preference mechanism and genetic evolution relationship in Zygophyllum.

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张玲.4种霸王属植物叶绿体基因组密码子偏好性分析[J].西北植物学报,2024,44(9):1445-1455

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  • 收稿日期:2024-05-04
  • 最后修改日期:2024-06-16
  • 录用日期:2024-06-17
  • 在线发布日期: 2024-08-21
  • 出版日期: 2024-09-05
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