Kim Minyoung, Lee Jongchan, Heo Lynn, Lee Sang Jun, Han Sang-Wook
Department of Plant Science and Technology, Chung-Ang University, Anseong 7546, Korea.
Department of Systems Biotechnology, Chung-Ang University, Anseong 17546, Korea.
Plant Pathol J. 2021 Feb 1;37(1):36-46. doi: 10.5423/PPJ.OA.12.2020.0221.
() is the causal agent of bacterial fruit blotch (BFB) in watermelon, a disease that poses a serious threat to watermelon production. Because of the lack of resistant cultivars against BFB, virulence factors or mechanisms need to be elucidated to control the disease. Glycerol-3-phosphate dehydrogenase is the enzyme involved in glycerol production from glucose during glycolysis. In this study, we report the functions of a putative glycerol-3-phosphate dehydrogenase in (GlpdAc) using comparative proteomic analysis and phenotypic observation. A knockout mutant, (EV), lost virulence against watermelon in two pathogenicity tests. The putative 3D structure and amino acid sequence of GlpdAc showed high similarity with glycerol-3-phosphate dehydrogenases from other bacteria. Comparative proteomic analysis revealed that many proteins related to various metabolic pathways, including carbohydrate metabolism, were affected by GlpdAc. Although (EV) could not use glucose as a sole carbon source, it showed growth in the presence of glycerol, indicating that GlpdAc is involved in glycolysis. (EV) also displayed higher cell-to-cell aggregation than the wild-type bacteria, and tolerance to osmotic stress and ciprofloxacin was reduced and enhanced in the mutant, respectively. These results indicate that GlpdAc is involved in glycerol metabolism and other mechanisms, including virulence, demonstrating that the protein has pleiotropic effects. Our study expands the understanding of the functions of proteins associated with virulence in .
()是西瓜细菌性果斑病(BFB)的致病因子,该病害对西瓜生产构成严重威胁。由于缺乏抗BFB的栽培品种,需要阐明毒力因子或机制以控制该病。甘油-3-磷酸脱氢酶是糖酵解过程中参与从葡萄糖产生甘油的酶。在本研究中,我们通过比较蛋白质组学分析和表型观察报告了()中一种假定的甘油-3-磷酸脱氢酶(GlpdAc)的功能。一个()基因敲除突变体(EV)在两项致病性测试中丧失了对西瓜的毒力。GlpdAc的假定三维结构和氨基酸序列与其他细菌的甘油-3-磷酸脱氢酶具有高度相似性。比较蛋白质组学分析表明,许多与各种代谢途径相关的蛋白质,包括碳水化合物代谢,都受到GlpdAc的影响。虽然(EV)不能将葡萄糖作为唯一碳源利用,但它在甘油存在下能生长,表示GlpdAc参与糖酵解。(EV)与野生型细菌相比还表现出更高的细胞间聚集,并且突变体对渗透胁迫的耐受性降低,对环丙沙星的耐受性增强。这些结果表明GlpdAc参与甘油代谢和其他机制,包括毒力,证明该蛋白具有多效性。我们的研究扩展了对()中与毒力相关蛋白质功能的理解。