Jang Chanyong, Wang Renyuan, Wells Joseph, Leon Fabian, Farman Mark, Hammond John, Goodin Michael M
Department of Plant Pathology, University of Kentucky, Lexington, KY, USA.
USDA-ARS, United States National Arboretum, Beltsville, MD, USA.
J Gen Virol. 2017 Jun;98(6):1526-1536. doi: 10.1099/jgv.0.000771. Epub 2017 Jun 21.
The genome sequence of the constricta strain of Potato yellow dwarf virus (CYDV) was determined to be 12 792 nt long and organized into seven ORFs with the gene order 3'-N-X-P-Y-M-G-L-5', which encodes the nucleocapsid, phospho, movement, matrix, glyco, and RNA-dependent RNA polymerase proteins, respectively, except for X, which is of unknown function. Cloned ORFs for each gene, except L, were used to construct a protein interaction and localization map (PILM) for this virus, which shares greater than 80 % amino acid similarity in all ORFs except X and P with the sanguinolenta strain of this species (SYDV). Protein localization patterns and interactions unique to each viral strain were identified, resulting in strain-specific PILMs. Localization of CYDV and SYDV proteins in virus-infected cells mapped subcellular loci likely to be sites of replication, morphogenesis and movement.
马铃薯黄矮病毒缢缩株(CYDV)的基因组序列测定结果显示,其长度为12792个核苷酸,由7个开放阅读框(ORF)组成,基因顺序为3'-N-X-P-Y-M-G-L-5',分别编码核衣壳蛋白、磷蛋白、运动蛋白、基质蛋白、糖蛋白和RNA依赖的RNA聚合酶蛋白,但X蛋白功能未知。除L基因外,每个基因的克隆开放阅读框用于构建该病毒的蛋白质相互作用和定位图谱(PILM),该病毒在除X和P之外的所有开放阅读框中与该物种的血红株(SYDV)具有超过80%的氨基酸相似性。鉴定出了每种病毒株特有的蛋白质定位模式和相互作用,从而得到了菌株特异性的蛋白质相互作用和定位图谱。CYDV和SYDV蛋白在病毒感染细胞中的定位确定了可能是复制、形态发生和运动位点的亚细胞位点。