Heath J D, Boulton M I, Raineri D M, Doty S L, Mushegian A R, Charles T C, Davies J W, Nester E W
University of Washington, Department of Microbiology, Seattle 98195-7242, USA.
Mol Plant Microbe Interact. 1997 Mar;10(2):221-7. doi: 10.1094/MPMI.1997.10.2.221.
The ability of Agrobacterium strains to infect transformation-recalcitrant maize plants has been shown to be determined mainly by the virA locus, implicating vir gene induction as the major factor influencing maize infection. In this report, we further explore the roles of vir induction-associated bacterial factors in maize infection using the technique of agroinfection. The Ti plasmid and virA source are shown to be important in determining the ability of a strain to infect maize, and the monosaccharide binding protein ChvE is absolutely required for maize agroinfection. The linker domain of VirAC58 from an agroinfection-competent strain, C58, is sufficient to convert VirAA6 of a nonagroinfecting strain, A348,to agroinfection competence. The periplasmic domain of VirAC58 is also able to confer a moderate level of agroinfection competence to VirAA6. In addition, the VirAA6 protein from A348 is agroinfection competent when removed from its cognate Ti plasmid background and placed in a pTiC58 background. The presence of a pTiA6-encoded, VirAA6-specific inhibitor is hypothesized and examined.
土壤杆菌菌株感染对转化有抗性的玉米植株的能力已被证明主要由virA位点决定,这表明vir基因的诱导是影响玉米感染的主要因素。在本报告中,我们使用农杆菌介导的感染技术进一步探讨了与vir诱导相关的细菌因子在玉米感染中的作用。Ti质粒和virA来源在决定菌株感染玉米的能力方面很重要,单糖结合蛋白ChvE是玉米农杆菌介导的感染绝对必需的。来自具有农杆菌介导的感染能力的菌株C58的VirAC58的连接域足以将非感染菌株A348的VirAA6转化为具有农杆菌介导的感染能力。VirAC58的周质结构域也能够赋予VirAA6中等水平的农杆菌介导的感染能力。此外,当从其同源Ti质粒背景中去除并置于pTiC58背景中时,来自A348的VirAA6蛋白具有农杆菌介导的感染能力。我们假设并检测了pTiA6编码的、VirAA6特异性抑制剂的存在。