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Codon Usage Bias Analysis of Citrus tristeza virus: Higher Codon Adaptation to Citrus reticulata Host

机译:柑桔病毒的密码子使用偏向分析:更高的密码子适应网状柑橘宿主

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摘要

Citrus tristeza virus (CTV), a member of the aphid-transmitted closterovirus group, is the causal agent of the notorious tristeza disease in several citrus species worldwide. The codon usage patterns of viruses reflect the evolutionary changes for optimization of their survival and adaptation in their fitness to the external environment and the hosts. The codon usage adaptation of CTV to specific citrus hosts remains to be studied; thus, its role in CTV evolution is not clearly comprehended. Therefore, to better explain the host–virus interaction and evolutionary history of CTV, the codon usage patterns of the coat protein (CP) genes of 122 CTV isolates originating from three economically important citrus hosts (55 isolate from Citrus sinensis, 38 from C. reticulata, and 29 from C. aurantifolia) were studied using several codon usage indices and multivariate statistical methods. The present study shows that CTV displays low codon usage bias (CUB) and higher genomic stability. Neutrality plot and relative synonymous codon usage analyses revealed that the overall influence of natural selection was more profound than that of mutation pressure in shaping the CUB of CTV. The contribution of high-frequency codon analysis and codon adaptation index value show that CTV has host-specific codon usage patterns, resulting in higheradaptability of CTV isolates originating from C. reticulata (Cr-CTV), and low adaptability in the isolates originating from C. aurantifolia (Ca-CTV) and C. sinensis (Cs-CTV). The combination of codon analysis of CTV with citrus genealogy suggests that CTV evolved in C. reticulata or other Citrus progenitors. The outcome of the study enhances the understanding of the factors involved in viral adaptation, evolution, and fitness toward their hosts. This information will definitely help devise better management strategies of CTV.
机译:柑橘传播的梭菌病毒(CTV)是蚜虫传播的克洛斯特病毒组的成员,是全世界多个柑橘物种中臭名昭著的Tristeza病的病原体。病毒的密码子使用方式反映了进化变化,以优化其生存和适应外部环境和宿主的能力。 CTV对特定柑橘宿主的密码子使用适应性仍有待研究;因此,其在CTV演进中的作用尚不清楚。因此,为了更好地解释CTV的宿主-病毒相互作用和进化史,来自三个经济上重要的柑橘宿主的122个CTV分离株的外壳蛋白(CP)基因的密码子使用模式(来自柑橘的55个分离株,来自C的38个分离株)。使用几种密码子使用指数和多元统计方法研究了网状网纹小花和29种来自桔小叶蝉的信息)。本研究表明,CTV显示出较低的密码子使用偏倚(CUB)和较高的基因组稳定性。中性图和相对同义密码子使用分析表明,在选择CTV的CUB时,自然选择的总体影响比突变压力更深刻。高频密码子分析和密码子适应指数值的贡献表明,CTV具有特定于宿主的密码子使用模式,从而导致源自网状梭菌的CTV分离株(Cr-CTV)的适应性更高,而源自C.桔梗(Ca-CTV)和中华梭状芽胞杆菌(Cs-CTV)。 CTV的密码子分析与柑橘族谱相结合,表明CTV在网状线虫或其他柑橘祖细胞中进化。研究结果增强了对病毒适应,进化和适应宿主的因素的理解。这些信息无疑将有助于设计更好的CTV管理策略。

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