首页> 外文OA文献 >Reverse Genetic Analysis of Ourmiaviruses Reveals the Nucleolar Localization of the Coat Protein in Nicotiana benthamiana and Unusual Requirements for Virion Formation ▿ † ‡
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Reverse Genetic Analysis of Ourmiaviruses Reveals the Nucleolar Localization of the Coat Protein in Nicotiana benthamiana and Unusual Requirements for Virion Formation ▿ † ‡

机译:逆病毒分析的反向病毒分析揭示了本氏烟草中外壳蛋白的核仁定位和病毒颗粒形成的异常要求。 ▿ † ‡

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摘要

Ourmia melon virus (OuMV) is the type member of the genus Ourmiavirus. These viruses have a trisegmented genome, each part of which encodes a single protein. Ourmiaviruses share a distant similarity with other plant viruses only in their movement proteins (MP), whereas their RNA-dependent RNA polymerase (RdRP) shares features only with fungal viruses of the family Narnaviridae. Thus, ourmiaviruses are in a unique phylogenetic position among existing plant viruses. Here, we developed an agroinoculation system to launch infection in Nicotiana benthamiana plants. Using different combinations of the three segments, we demonstrated that RNA1 is necessary and sufficient for cis-acting replication in the agroinfiltrated area. RNA2 and RNA3, encoding the putative movement protein and the coat protein (CP), respectively, are both necessary for successful systemic infection of N. benthamiana. The CP is dispensable for long-distance transport of the virus through vascular tissues, but its absence prevents efficient systemic infection at the exit sites. Virion formation occurred only when the CP was translated from replication-derived RNA3. Transient expression of a green fluorescent protein-MP (GFP-MP) fusion via agroinfiltration showed that the MP is present in cytoplasmic connections across plant cell walls; in protoplasts the GFP-MP fusion stimulates the formation of tubular protrusions. Expression through agroinfiltration of a GFP-CP fusion displays most of the fluorescence inside the nucleus and within the nucleolus in particular. Nuclear localization of the CP was also confirmed through Western blot analysis of purified nuclei. The significance of several unusual properties of OuMV for replication, virion assembly, and movement is discussed in relation to other positive-strand RNA viruses.
机译:Ourmia甜瓜病毒(OuMV)是Ourmiavirus属的类型成员。这些病毒具有三段式基因组,其每个部分编码一个蛋白质。 Ourmiaviruses仅在其运动蛋白(MP)方面与其他植物病毒具有遥远的相似性,而其RNA依赖性RNA聚合酶(RdRP)仅与Narnaviridae家族的真菌病毒具有相同的功能。因此,在现有的植物病毒中,我们的伞菌病毒处于独特的系统发育位置。在这里,我们开发了一种农杆菌接种系统,以对本氏烟草植物进行感染。使用三个部分的不同组合,我们证明RNA1是必要的和足够的在农业渗透区的顺式复制。 RNA2和RNA3,分别编码假定的运动蛋白和外壳蛋白(CP),都是成功地对本氏烟草进行全身感染的必要条件。 CP对于病毒通过血管组织的长距离运输是必不可少的,但是CP的缺失会阻止出口部位的有效全身感染。仅当CP从复制衍生的RNA3中翻译出来时,病毒粒子才发生。通过农杆菌浸润瞬时表达绿色荧光蛋白-MP(GFP-MP)融合蛋白表明,该MP存在于植物细胞壁的细胞质连接中。在原生质体中,GFP-MP融合物刺激了管状突起的形成。通过农杆菌浸润的GFP-CP融合蛋白的表达显示出细胞核内特别是核仁内的大部分荧光。 CP的核定位也通过纯化的核的Western印迹分析来证实。针对其他正链RNA病毒,讨论了OuMV的几种非凡特性对于复制,病毒体装配和运动的重要性。

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