Azzam O, Frazer J, de la Rosa D, Beaver J S, Ahlquist P, Maxwell D P
Department of Plant Pathology, University of Wisconsin at Madison 53706.
Virology. 1994 Oct;204(1):289-96. doi: 10.1006/viro.1994.1533.
Bean golden mosaic geminivirus (BGMV) has a bipartite genome composed of two circular ssDNA components (DNA-A and DNA-B) and is transmitted by the whitefly, Bemisia tabaci. DNA-A encodes the viral replication proteins and the coat protein. To determine the role of BGMV coat protein systemic infection and whitefly transmission, two deletions and a restriction fragment inversion were introduced into the BGMV coat protein gene. All three coat protein mutants produced systemic infections when coinoculated with DNA-B onto Phaseolus vulgaris using electric discharge particle acceleration "particle gun." However, they were not sap transmissible and coat protein was not detected in mutant-infected plants. In addition, none of the mutants were transmitted by whiteflies. With all three mutants, ssDNA accumulation of DNA-A and DNA-B was reduced 25- to 50-fold and 3- to 10-fold, respectively, as compared to that of wild-type DNA. No effect on dsDNA-A accumulation was detected and there was 2- to 5-fold increase in dsDNA-B accumulation. Recombinants between the mutated DNA-A and DNA-B forms were identified when the inoculated coat protein mutant was linearized in the common region.
菜豆金色花叶双生病毒(BGMV)具有由两个环状单链DNA组分(DNA - A和DNA - B)组成的双分体基因组,由烟粉虱传播。DNA - A编码病毒复制蛋白和外壳蛋白。为了确定BGMV外壳蛋白在系统感染和粉虱传播中的作用,在BGMV外壳蛋白基因中引入了两个缺失和一个限制性片段倒置。当使用放电粒子加速“粒子枪”将所有三个外壳蛋白突变体与DNA - B共同接种到菜豆上时,均产生了系统感染。然而,它们不能通过汁液传播,并且在突变体感染的植物中未检测到外壳蛋白。此外,没有一个突变体能够被粉虱传播。与野生型DNA相比,所有三个突变体中DNA - A和DNA - B的单链DNA积累分别减少了25至50倍和3至10倍。未检测到对双链DNA - A积累的影响,并且双链DNA - B积累增加了2至5倍。当接种的外壳蛋白突变体在共同区域线性化时,鉴定出了突变的DNA - A和DNA - B形式之间的重组体。