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Genetic transfer of amylovoran and stewartan synthesis between Erwinia amylovora and Erwinia stewartii

机译:Erwinia Amylovora和Erwinia Stewartii之间的淀粉醇和斯图拉坦合成的遗传转移

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DNA fragments with ams genes of Erwinia amylovora and cps genes of Erwinia stewartii were transferred to exopolysaccharide (EPS)-deficient mutants of the other species. The resulting EPSs were characterized by sensitivity to EPS-dependent bacteriophages, staining with amylovoran-specific fluorescein-isothiocyanate-labelled lectin and chemical techniques, such as determination of the sugar composition and methylation analysis in order to distinguish between amylovoran and stewartan. Degradation by the stewartan-dependent phage ?-K9 was used to detect stewartan production, and staining with a lectin from Abrus precatorius detected amylovoran capsules. The patterns of sugar linkages were determined by methylation analysis. Stewartan contained a significantly higher glucose to galactose ratio than amylovoran and produced a characteristic signal from 6-linked glucose residues. By these criteria, most E. stewartii cps mutants displayed exclusively amylovoran synthesis when complemented with the ams cluster, and E. amylovora ams mutants complemented with E. stewartii cps genes produced stewartan. The complementation to an EPS-positive phenotype may require most genes of the ams or the cps operon. An exception was an E. stewartii cpsK mutant that made predominantly stewartan when complemented with the ams cosmid. IR spectra showed that both amylovoran and stewartan were acylated when synthesized in E. amylovora, but not in E. stewartii. The amylovoran-producing E. stewartii merodiploids regained virulence to corn seedlings when mucoidy was restored by the ams cluster, but the stewartan-producing E. amylovora ams-lcps+ strains were weakly virulent on pear slices and avirulent on apple seedlings.
机译:DNA片段与Erwinia Amylovora的AMS基因和Erwinia Stewartii的CPS基因转移到其他物种的外奥糖(EPS)突变体中。得到的EPSS以对EPS依赖性噬菌体的敏感性的特征,用淀粉醇特异性荧光素 - 异硫氰酸酯标记的凝集素和化学技术染色,例如糖组合物的测定和甲基化分析以区分淀粉醇和斯堪洛丹。依赖依赖噬菌体β-k9的降解用于检测Stewartan的生产,并用副素从abrus precatorius检测到的氨基甲烷胶囊染色。通过甲基化分析确定糖键的模式。 Stewartan含有比淀粉酚的半乳糖比显着更高的葡萄糖,并产生来自6个连接的葡萄糖残基的特征信号。通过这些标准,大多数E.Stewartii CPS突变体在与AMS簇互补时专门的淀粉醇合成,而E. Amylovora AMS突变体与E. Stevartii CPS基因产生德尔坦坦。对EPS阳性表型的互补可能需要AMS或CPS操纵子的大多数基因。例外是E. Stewartii CPSK突变体,其主要在与AMS Cosmid补充时驯服的斯图拉坦。 IR光谱表明,当在E.氨基瓦氏菌(Emylovora)合成时,淀粉醇和斯己酸两者均酰化,但不含E. Stewartii。当AMS簇恢复粘液沉积时,产生的淀粉醇的E. Stewartii Metodipss毒毒力对玉米幼苗,但是在苹果幼苗上,山梨醇的E.Ams-LCPS +菌株是弱毒性的毒性。

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