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首页> 外文期刊>Physiological and Molecular Plant Pathology >Biosynthesis of the repeating units of the exopolysaccharides amylovoran from Erwinia amylovora and stewartan from Pantoea stewartii
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Biosynthesis of the repeating units of the exopolysaccharides amylovoran from Erwinia amylovora and stewartan from Pantoea stewartii

机译:生物合成欧文氏欧文氏菌胞外多糖amylovoran和斯图尔特泛菌的斯图尔坦的重复单元

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摘要

The causative agent of fire blight, Erwinia amylovora, synthesizes the exopolysaccharide (EPS) amylovoran, an important pathogenicity factor. Similarly, Pantoea stewartii, needs the related exopolysaccharide, stewartan, to cause Stewart's bacterial wilt of sweet maize. These acidic complex EPSs mask the recognition of the pathogens E. amylovora and P. stewartii by plant defense reactions and promote bacterial growth and movement in planta. The E. amylovora ams gene cluster determines the biosynthesis of the amylovoran EPS repeating unit, which is comprised of four galactose and one glucuronic acid residues. Stewartan is synthesized by the P. stewartii cps gene products. Functions of Ams proteins were analyzed in an in-vitro system with EDTA-treated cells. Cross-complementation of an amsD mutant with the cpsFG genes from P. stewartii resulted in chimeric EPS with glucose instead of galactose as the second sugar residue in the backbone. AmsG adds the first galactose and AmsD the next one. The ability of CpsF to attach the next galactose residue to the backbone of the chimeric EPS suggests a similar role for AmsE. Evidence for the possible roles of other glycosyltransferases in the assembly of the repeating units of amylovoran and stewartan is presented
机译:枯萎病的病原体淀粉小球藻(Erwinia amylovora)合成了胞外多糖(EPS)苯丙胺醇,一种重要的致病因子。同样,Pantoea stewartii需要相关的胞外多糖Stewartan,以引起Stewart甜玉米的细菌枯萎。这些酸性复合物EPS通过植物防御反应掩盖了对病原体E. amylovora和P. stewartii的识别,并促进了细菌在植物中的生长和运动。支链淀粉菌基因簇决定了由4个半乳糖和1个葡糖醛酸残基组成的amylovoran EPS重复单元的生物合成。 Stewartan是由Stewartii cps基因产物合成的。在具有EDTA处理的细胞的体外系统中分析了Ams蛋白的功能。一个amsD突变体与斯氏假单胞菌的cpsFG基因交叉互补,导致嵌合EPS产生了葡萄糖,而不是半乳糖作为主链中的第二个糖基。 AmsG添加第一个半乳糖,AmsD添加下一个。 CpsF将下一个半乳糖残基连接至嵌合EPS骨架的能力表明了AmsE的类似作用。提出了其他糖基转移酶可能在阿莫罗福和斯图尔坦重复单元的装配中可能发挥作用的证据

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