首页> 美国卫生研究院文献>Microorganisms >The Gene Encoding NAD-Dependent Epimerase/Dehydratase wcaG Affects Cell Surface Properties Virulence and Extracellular Enzyme Production in the Soft Rot Phytopathogen Pectobacteriumcarotovorum
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The Gene Encoding NAD-Dependent Epimerase/Dehydratase wcaG Affects Cell Surface Properties Virulence and Extracellular Enzyme Production in the Soft Rot Phytopathogen Pectobacteriumcarotovorum

机译:编码NAD依赖的差向异构酶/脱水酶wcaG的基因影响细胞表面特性毒力和软腐烂植物病原菌分枝杆菌中的细胞外酶的产生。胡萝卜

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摘要

Pectobacterium carotovorum is a gram-negative bacterium that, together with other soft rot Enterobacteriaceae causes soft rot disease in vegetables, fruits, and ornamental plants through the action of exoproteins including plant cell wall-degrading enzymes (PCWDEs). Although pathogenicity in these bacteria is complex, virulence levels are proportional to the levels of plant cell wall-degrading exoenzymes (PCWDEs) secreted. Two low enzyme-producing transposon Tn5 mutants were isolated, and compared to their parent KD100, the mutants were less virulent on celery petioles and carrot disks. The inactivated gene responsible for the reduced virulence phenotype in both mutants was identified as wcaG. The gene, wcaG (previously denoted fcl) encodes NAD-dependent epimerase/dehydratase, a homologue of GDP-fucose synthetase of Escherichia coli. In Escherichia coli, GDP-fucose synthetase is involved in the biosynthesis of the exopolysaccharide, colanic acid (CA). The wcaG mutants of P. carotovorum formed an enhanced level of biofilm in comparison to their parent. In the hydrophobicity test the mutants showed more hydrophobicity than the parent in hexane and hexadecane as solvents. Complementation of the mutants with extrachromosomal copies of the wild type gene restored these functions to parental levels. These data indicate that NAD-dependent epimerase/dehydratase plays a vital rule in cell surface properties, exoenzyme production, and virulence in P. carotovorum.
机译:胡萝卜杆菌杆菌是一种革兰氏阴性细菌,它与其他软腐肠杆菌科细菌一起通过包括植物细胞壁降解酶(PCWDEs)在内的蛋白质作用,在蔬菜,水果和观赏植物中引起软腐病。尽管这些细菌的致病性很复杂,但毒力水平与分泌的植物细胞壁降解性外酶(PCWDE)的水平成正比。分离了两个低产酶转座子Tn5突变体,与它们的亲本KD100相比,该突变体在芹菜叶柄和胡萝卜盘上的毒性较低。导致两个突变体中毒力表型降低的失活基因被鉴定为wcaG。 wcaG基因(以前称为fcl)编码NAD依赖的差向异构酶/脱水酶,这是大肠杆菌GDP-岩藻糖合成酶的同源物。在大肠杆菌中,GDP-岩藻糖合成酶参与了外多糖,可乐酸(CA)的生物合成。与其亲本相比,胡萝卜假单胞菌的wcaG突变体形成了更高水平的生物膜。在疏水性测试中,突变体在己烷和十六烷作为溶剂中显示出比母体更大的疏水性。突变体与野生型基因的染色体外拷贝的互补将这些功能恢复到亲本水平。这些数据表明,NAD依赖的差向异构酶/脱水酶在胡萝卜假单胞菌的细胞表面特性,外切酶产生和毒性方面起着至关重要的作用。

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