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Global-scale computational analysis of genomic sequences reveals the recombination pattern and coevolution dynamics of cereal-infecting geminiviruses

机译:基因组序列的全球规模计算分析揭示了感染谷物的双生病毒的重组模式和协同进化动力学

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摘要

Genetic diversity and recombination patterns were evaluated for 229 isolates of Wheat dwarf virus (WDV), which are important cereal-infecting geminiviruses. Recombination hot spots were concentrated at the boundary of the genes encoding for the replication protein (Rep), the coat protein (cp) and the movement protein (mp), as well as inside Rep and cp and in the short intergenic regions (SIR). Phylogenomic analyses confirmed that the global population of WDV clustered into two groups according to their specific host: wheat and barley, and the crucial regions for the division of two groups were mp and the large intergenic regions (LIR). The computationally inferred pattern of coevolution between amino acid residues and the predicted 3D structure for the viral proteins provided further differences among the strains or species at the genome and protein level. Pervasive interaction between Rep and Rep A proteins in WDV-wheat-specific group reflected their important and complex function in the replication and transcription of WDV. Furthermore, significant predicted interactions between CP and Rep and CP and Rep A proteins in the WDV-wheat-specific group are thought to be crucial for successful encapsidation and movement of the virus during infection.
机译:评估了229种小麦矮化病毒(WDV)的遗传多样性和重组模式,这是重要的谷物感染双生病毒。重组热点集中在编码复制蛋白(Rep),外壳蛋白(cp)和运动蛋白(mp)的基因的边界,以及Rep和cp内部以及短基因间隔区(SIR)。 。系统生物学分析证实,WDV的全球种群根据其特定宿主分为小麦和大麦两大类,而两组划分的关键区域是mp和大基因间区域(LIR)。氨基酸残基与病毒蛋白的预测3D结构之间的协同进化计算推断模式提供了在基因组和蛋白水平上菌株或物种之间的进一步差异。 WDV-小麦特异性基团中Rep和Rep A蛋白之间的普遍相互作用反映了它们在WDV复制和转录中的重要和复杂功能。此外,在WDV-小麦特异性组中,CP和Rep之间以及CP和Rep A蛋白之间的显着预测相互作用被认为对于病毒在感染过程中的成功衣壳化和运动至关重要。

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