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比较分析买麻藤目植物叶绿体基因组的密码子使用模式。

Comparative Analysis of the Codon Usage Pattern in the Chloroplast Genomes of Gnetales Species.

机构信息

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.

Inner Mongolia Academy of Forestry Science, Hohhot 010021, China.

出版信息

Int J Mol Sci. 2024 Oct 2;25(19):10622. doi: 10.3390/ijms251910622.

Abstract

Codon usage bias refers to the preferential use of synonymous codons, a widespread phenomenon found in bacteria, plants, and animals. Codon bias varies among species, families, and groups within kingdoms and between genes within an organism. Codon usage bias (CUB) analysis sheds light on the evolutionary dynamics of various species and optimizes targeted gene expression in heterologous host plants. As a significant order of gymnosperms, species within Gnetales possess extremely high ecological and pharmaceutical values. However, comprehensive analyses of CUB within the chloroplast genomes of Gnetales species remain unexplored. A systematic analysis was conducted to elucidate the codon usage patterns in 13 diverse Gnetales species based on the chloroplast genomes. Our results revealed that chloroplast coding sequences (cp CDSs) in 13 Gnetales species display a marked preference for AT bases and A/T-ending codons. A total of 20 predominantly high-frequency codons and between 2 and 7 optimal codons were identified across these species. The findings from the ENC-plot, PR2-plot, and neutrality analyses suggested that both mutation pressure and natural selection exert influence on the codon bias in these 13 Gnetales species, with natural selection emerging as the predominant influence. Correspondence analysis (COA) demonstrated variation in the codon usage patterns among the Gnetales species and indicated mutation pressure is another factor that could impact CUB. Additionally, our research identified a positive correlation between the measure of idiosyncratic codon usage level of conservatism (MILC) and synonymous codon usage order (SCUO) values, indicative of CUB's potential influence on gene expression. The comparative analysis concerning codon usage frequencies among the 13 Gnetales species and 4 model organisms revealed that and were the optimal exogenous expression hosts. Furthermore, the cluster and phylogenetic analyses illustrated distinct patterns of differentiation, implying that codons, even with weak or neutral preferences, could affect the evolutionary trajectories of these species. Our results reveal the characteristics of codon usage patterns and contribute to an enhanced comprehension of evolutionary mechanisms in Gnetales species.

摘要

密码子使用偏好是指同义密码子的优先使用,这是一种在细菌、植物和动物中广泛存在的现象。密码子偏倚在物种、科和王国内的群体以及生物体内部的基因之间存在差异。密码子使用偏好(CUB)分析揭示了各种物种的进化动态,并优化了异源宿主植物中目标基因的表达。作为裸子植物的一个重要目,苏铁目中的物种具有极高的生态和药用价值。然而,关于苏铁目植物叶绿体基因组中的 CUB 综合分析尚未得到探索。本研究基于叶绿体基因组,对 13 种苏铁目植物的密码子使用模式进行了系统分析。结果表明,13 种苏铁目植物的叶绿体编码序列(cp CDSs)显示出对 AT 碱基和 A/T 结尾密码子的明显偏好。总共鉴定出 20 个主要高频密码子和 2 到 7 个最佳密码子。ENC-plot、PR2-plot 和中性分析的结果表明,突变压力和自然选择都对这些苏铁目植物的密码子偏倚产生影响,自然选择是主要影响因素。对应分析(COA)表明,苏铁目植物的密码子使用模式存在差异,表明突变压力是影响 CUB 的另一个因素。此外,我们的研究还发现,独特密码子使用保守性度量(MILC)和同义密码子使用顺序(SCUO)值之间存在正相关,表明 CUB 可能对基因表达产生影响。对 13 种苏铁目植物和 4 种模式生物的密码子使用频率进行比较分析表明,和 是最优的外源表达宿主。此外,聚类和系统发育分析表明,这些物种存在明显的分化模式,表明即使是弱偏好或中性偏好的密码子也可能影响这些物种的进化轨迹。本研究揭示了苏铁目植物密码子使用模式的特征,有助于深入了解苏铁目植物的进化机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52ed/11477115/e35c1aa6772f/ijms-25-10622-g001.jpg

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