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Role of Pea Enation Mosaic Virus Coat Protein in the Host Plant and Aphid Vector

机译:豌豆花叶病毒外壳蛋白在宿主植物和蚜虫载体中的作用

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摘要

Understanding the molecular mechanisms involved in plant virus–vector interactions is essential for the development of effective control measures for aphid-vectored epidemic plant diseases. The coat proteins (CP) are the main component of the viral capsids, and they are implicated in practically every stage of the viral infection cycle. Pea enation mosaic virus 1 (PEMV1, Enamovirus , Luteoviridae ) and Pea enation mosaic virus 2 (PEMV2, Umbravirus , Tombusviridae ) are two RNA viruses in an obligate symbiosis causing the pea enation mosaic disease. Sixteen mutant viruses were generated with mutations in different domains of the CP to evaluate the role of specific amino acids in viral replication, virion assembly, long-distance movement in Pisum sativum , and aphid transmission. Twelve mutant viruses were unable to assemble but were able to replicate in inoculated leaves, move long-distance, and express the CP in newly infected leaves. Four mutant viruses produced virions, but three were not transmissible by the pea aphid, Acyrthosiphon pisum . Three-dimensional modeling of the PEMV CP, combined with biological assays for virion assembly and aphid transmission, allowed for a model of the assembly of PEMV coat protein subunits.
机译:了解植物病毒与载体相互作用的分子机制对于开发有效的防治蚜虫媒介的流行性植物疾病的控制措施至关重要。外壳蛋白(CP)是病毒衣壳的主要成分,它们实际上参与了病毒感染周期的每个阶段。豌豆花叶病毒1(PEMV1,Enamovirus,Luteoviridae)和豌豆花叶病毒2(PEMV2,Umbravirus,Tombusviridae)是专一共生的两种RNA病毒,引起豌豆花叶病。产生了十六个突变病毒,这些变异病毒在CP的不同域中都有突变,以评估特定氨基酸在病毒复制,病毒体装配,豌豆中的长距离运动和蚜虫传播中的作用。十二种突变病毒无法装配,但能够在接种的叶子中复制,长距离移动并在新感染的叶子中表达CP。四种突变病毒可产生病毒体,但豌豆蚜虫无性蚜不能传播三种。 PEMV CP的三维建模,与病毒体组装和蚜虫传播的生物学分析相结合,为PEMV外壳蛋白亚基的组装提供了模型。

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