Comparative analyses of three grapevine Pinot gris virus cDNA clones reveal insights into the pathological properties of different phylogroups.

Dipendra Karki, Rita Musetti, Baozhong Meng
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Abstract

Grapevine Pinot gris virus (GPGV) is an emerging grapevine virus associated with grapevine leaf mottling and deformation (GLMD) disease. Being a recently identified virus, the molecular biology, pathological properties, and etiological complexity of GPGV remain poorly studied. Previous research revealed that GPGV comprises genetically different variants, some encoding a larger movement protein (MP) and others a shorter MP due to a C/T polymorphic site in ORF2 encoding MP. Variants that encode the shorter MP are associated with severe disease, whereas variants encoding the longer MP are associated with mild or no symptoms. However, this has yet to be demonstrated experimentally. Here, we report the construction of a wildtype cDNA clone, pGPGV-SY, based on ON93-12, a local isolate from Syrah closely related to the variants encoding the larger MP. Surprisingly, our clone exhibited significantly faster replication and caused more severe disease symptoms than pRI::GPGV-lat, an Italian GPGV clone, with a longer MP and demonstrated similar efficacies with that of pRI::GPGV-vir, another Italian clone with a shorter MP. A single C to T mutation at the polymorphic site of pGPGV-SY resulted in a two-fold higher RNA accumulation in the grapevine. Findings from this work constitute a leap toward the long-standing and complex question pertaining to the relationship between GPGV variant groups and GLMD. Integrating findings from this work and those by others, we propose an updated model to explain the complex relationship between GPGV variants and GLMD.

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三个葡萄灰比诺病毒cDNA克隆的比较分析揭示了不同系统群的病理特性。
葡萄灰比诺病毒(GPGV)是一种与葡萄叶片斑驳和变形(GLMD)病相关的新型葡萄病毒。作为一种新发现的病毒,GPGV的分子生物学、病理特性和病因复杂性的研究仍然很少。先前的研究表明,GPGV包括遗传上不同的变体,一些编码较大的运动蛋白(MP),另一些编码较短的MP,这是由于ORF2中C/T多态性位点编码MP。编码较短MP的变异体与严重疾病相关,而编码较长MP的变异体与轻度或无症状相关。然而,这还有待实验证明。在这里,我们报道了一个野生型cDNA克隆的构建,pGPGV-SY,基于ON93-12,一个与编码较大MP的变体密切相关的西拉本地分离物。令人惊讶的是,我们的克隆比pRI::GPGV-lat(一种MP较长的意大利GPGV克隆)的复制速度快得多,引起的疾病症状更严重,并显示出与pRI::GPGV-vir(另一种MP较短的意大利克隆)相似的疗效。pGPGV-SY多态性位点的单个C到T突变导致葡萄中RNA积累量增加两倍。这项工作的发现为长期存在的GPGV变异群与GLMD之间关系的复杂问题提供了一个飞跃。综合本研究和其他研究成果,我们提出了一个更新的模型来解释GPGV变异与GLMD之间的复杂关系。
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