Geng Chao, Cong Qian-Qian, Li Xiang-Dong, Mou An-Li, Gao Rui, Liu Jin-Liang, Tian Yan-Ping
Laboratory of Plant Virology, Department of Plant Pathology, College of Plant Protection (C.G., Q.-Q.C., X.-D.L., A.-L.M., R.G., J.-L.L., Y.-P.T.), and Collaborative Innovation Centre for Annually High Yield and High Efficiency Production of Wheat and Corn (C.G., X.-D.L.), Shandong Agricultural University, Tai'an, Shandong 271018, China; andCollege of Plant Sciences, Jilin University, Changchun 130062, China (J.-L.L.).
Laboratory of Plant Virology, Department of Plant Pathology, College of Plant Protection (C.G., Q.-Q.C., X.-D.L., A.-L.M., R.G., J.-L.L., Y.-P.T.), and Collaborative Innovation Centre for Annually High Yield and High Efficiency Production of Wheat and Corn (C.G., X.-D.L.), Shandong Agricultural University, Tai'an, Shandong 271018, China; andCollege of Plant Sciences, Jilin University, Changchun 130062, China (J.-L.L.)
Plant Physiol. 2015 Feb;167(2):394-410. doi: 10.1104/pp.114.252734. Epub 2014 Dec 24.
The intercellular movement of plant viruses requires both viral and host proteins. Previous studies have demonstrated that the frame-shift protein P3N-PIPO (for the protein encoded by the open reading frame [ORF] containing 5'-terminus of P3 and a +2 frame-shift ORF called Pretty Interesting Potyviridae ORF and embedded in the P3) and CYLINDRICAL INCLUSION (CI) proteins were required for potyvirus cell-to-cell movement. Here, we provide genetic evidence showing that a Tobacco vein banding mosaic virus (TVBMV; genus Potyvirus) mutant carrying a truncated PIPO domain of 58 amino acid residues could move between cells and induce systemic infection in Nicotiana benthamiana plants; mutants carrying a PIPO domain of seven, 20, or 43 amino acid residues failed to move between cells and cause systemic infection in this host plant. Interestingly, the movement-defective mutants produced progeny that eliminated the previously introduced stop codons and thus restored their systemic movement ability. We also present evidence showing that a developmentally regulated plasma membrane protein of N. benthamiana (referred to as NbDREPP) interacted with both P3N-PIPO and CI of the movement-competent TVBMV. The knockdown of NbDREPP gene expression in N. benthamiana impeded the cell-to-cell movement of TVBMV. NbDREPP was shown to colocalize with TVBMV P3N-PIPO and CI at plasmodesmata (PD) and traffic to PD via the early secretory pathway and the actomyosin motility system. We also show that myosin XI-2 is specially required for transporting NbDREPP to PD. In conclusion, NbDREPP is a key host protein within the early secretory pathway and the actomyosin motility system that interacts with two movement proteins and influences virus movement.
植物病毒的细胞间移动需要病毒蛋白和宿主蛋白。先前的研究表明,移码蛋白P3N-PIPO(由包含P3 5'端的开放阅读框[ORF]编码的蛋白以及一个名为“非常有趣的马铃薯Y病毒科ORF”且嵌入P3的+2移码ORF)和柱状内含体(CI)蛋白是马铃薯Y病毒细胞间移动所必需的。在此,我们提供了遗传证据,表明携带58个氨基酸残基截短的PIPO结构域的烟草脉带花叶病毒(TVBMV;马铃薯Y病毒属)突变体能够在细胞间移动并在本氏烟草植株中引发系统感染;携带7个、20个或43个氨基酸残基PIPO结构域的突变体无法在细胞间移动,也无法在该宿主植物中引发系统感染。有趣的是,移动缺陷型突变体产生的子代消除了先前引入的终止密码子,从而恢复了它们的系统移动能力。我们还提供证据表明,本氏烟草中一种受发育调控的质膜蛋白(称为NbDREPP)与具有移动能力的TVBMV的P3N-PIPO和CI相互作用。在本氏烟草中敲低NbDREPP基因表达会阻碍TVBMV的细胞间移动。结果表明,NbDREPP与TVBMV的P3N-PIPO和CI在胞间连丝(PD)处共定位,并通过早期分泌途径和肌动球蛋白运动系统运输至PD。我们还表明,肌球蛋白XI-2是将NbDREPP运输至PD所特别需要的。总之,NbDREPP是早期分泌途径和肌动球蛋白运动系统中的一种关键宿主蛋白,它与两种移动蛋白相互作用并影响病毒移动。