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Intracellular distribution of viral gene products regulates a complex mechanism of cauliflower mosaic virus acquisition by its aphid vector

机译:病毒基因产物的细胞内分布调节其蚜虫载体获取花椰菜花叶病毒的复杂机制

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摘要

Interactions between Cauliflower mosaic virus (CaMV) and its aphid vector are regulated by the viral protein P2, which binds to the aphid stylets, and protein P3, which bridges P2 and virions. By using baculovirus expression of P2 and P3, electron microscopy, surface plasmon resonance, affinity chromatography, and transmission assays, we demonstrate that P3 must be previously bound to virions in order that attachment to P2 will allow aphid transmission of CaMV. We also show that a P2:P3 complex exists in the absence of virions but is nonfunctional in transmission. Hence, unlike P2, P3 and virions cannot be sequentially acquired by the vector. Immunogold labeling revealed the predominance of spatially separated P2:P3 and P3:virion complexes in infected plant cells. This specific distribution indicates that the transmissible complex, P2:P3:virion, does not form primarily in infected plants but in aphids. A model, describing the regulating role of P3 in the formation of the transmissible CaMV complex in planta and during acquisition by aphids, is presented, and its consequences are discussed.
机译:花椰菜花叶病毒(CaMV)及其蚜虫载体之间的相互作用受与蚜虫探针结合的病毒蛋白P2和桥接P2和病毒体的蛋白P3调控。通过使用杆状病毒P2和P3的表达,电子显微镜,表面等离振子共振,亲和层析和透射测定,我们证明P3必须事先结合到病毒体上,以便与P2的附着将允许CaMV的蚜虫传播。我们还显示,P2:P3复合体在没有病毒体的情况下存在,但在传播中不起作用。因此,与P2不同,P3和病毒体不能被载体顺序获得。免疫金标记显示在受感染的植物细胞中占优势的是空间分离的P2:P3和P3:病毒体复合物。这种特定的分布表明,可传播的复合体P2:P3:病毒体不是主要在受感染的植物中形成,而是在蚜虫中形成。提出了一个模型,该模型描述了P3在植物中和蚜虫获取过程中可传播CaMV复合物的形成中的调节作用,并讨论了其后果。

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