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西瓜嗜酸菌中一个假定的YggS家族磷酸吡哆醛依赖性酶的蛋白质组学和表型分析

Proteomic and Phenotypic Analyses of a Putative YggS Family Pyridoxal Phosphate-Dependent Enzyme in Acidovorax citrulli.

作者信息

Heo Lynn, Cho Yongmin, Choi Junhyeok, Lee Jeongwook, Han Yoobin, Han Sang-Wook

机构信息

Department of Plant Science and Technology, Chung-Ang University, Anseong 17546, Korea.

出版信息

Plant Pathol J. 2023 Jun;39(3):235-244. doi: 10.5423/PPJ.OA.03.2023.0050. Epub 2023 Jun 1.

Abstract

Acidovorax citrulli (Ac) is a phytopathogenic bacterium that causes bacterial fruit blotch (BFB) in cucurbit crops, including watermelon. However, there are no effective methods to control this disease. YggS family pyridoxal phosphate-dependent enzyme acts as a coenzyme in all transamination reactions, but its function in Ac is poorly understood. Therefore, this study uses proteomic and phenotypic analyses to characterize the functions. The Ac strain lacking the YggS family pyridoxal phosphate-dependent enzyme, AcΔyppAc(EV), virulence was wholly eradicated in geminated seed inoculation and leaf infiltration. AcΔyppAc(EV) propagation was inhibited when exposed to L-homoserine but not pyridoxine. Wild-type and mutant growth were comparable in the liquid media but not in the solid media in the minimal condition. The comparative proteomic analysis revealed that YppAc is primarily involved in cell motility and wall/membrane/envelop biogenesis. In addition, AcΔyppAc(EV) reduced biofilm formation and twitching halo production, indicating that YppAc is involved in various cellular mechanisms and possesses pleiotropic effects. Therefore, this identified protein is a potential target for developing an efficient anti-virulence reagent to control BFB.

摘要

西瓜嗜酸菌(Ac)是一种植物病原细菌,可在包括西瓜在内的葫芦科作物中引发细菌性果斑病(BFB)。然而,目前尚无有效的方法来控制这种疾病。YggS家族磷酸吡哆醛依赖性酶在所有转氨反应中作为辅酶发挥作用,但其在西瓜嗜酸菌中的功能尚不清楚。因此,本研究采用蛋白质组学和表型分析来表征其功能。缺失YggS家族磷酸吡哆醛依赖性酶的Ac菌株AcΔyppAc(EV),在发芽种子接种和叶片浸润实验中其毒力完全消除。当暴露于L-高丝氨酸而非吡哆醇时,AcΔyppAc(EV)的繁殖受到抑制。在液体培养基中,野生型和突变体的生长情况相当,但在基本条件下的固体培养基中并非如此。比较蛋白质组学分析表明,YppAc主要参与细胞运动以及细胞壁/细胞膜/包膜生物合成。此外,AcΔyppAc(EV)减少了生物膜形成和抽搐晕圈的产生,表明YppAc参与多种细胞机制并具有多效性作用。因此,这种鉴定出的蛋白质是开发控制细菌性果斑病高效抗毒力试剂的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df90/10265119/7fdaf20499a7/ppj-oa-03-2023-0050f1.jpg

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