Bellemann P, Bereswill S, Berger S, Geider K
Max-Planck-Institut für medizinische Forschung, Heidelberg, Germany.
Int J Biol Macromol. 1994 Dec;16(6):290-6. doi: 10.1016/0141-8130(94)90058-2.
Exopolysaccharide (EPS) synthesis by Erwinia amylovora depends on environmental and genetic predispositions. To measure the amount of the acidic EPS amylovoran synthesized by E. amylovora cell cultures, a turbidity assay using cetylpyridinium salt was developed. The EPS produced by bacteria grown on solid media was additionally characterized by its water content. The amylovoran capsules were visualized in situ by staining with fluorescein isothiocyanate (FITC)-labelled lectin from Abrus precatorius, which reacts with the galactose residue of the EPS side chain. The staining and the turbidity assays were applied to suspension cell cultures or to cells from colonies and did not require any purification steps. Lectin staining was superior to electron microscopic (EM) techniques for visualization of capsules. For EM, the capsule was stabilized with polycationic ferritin. In contrast to lectin staining, only a small fraction of the cells was found to be EPS-coated in the EM assay. An increase in capsulation and in amylovoran production was found in conjunction with mutations in a ribosomal protein conferring resistance to streptomycin. Furthermore, the presence of sorbitol in the growth environment resulted in high synthesis of amylovoran. Cells in the stationary growth phase continued to produce amylovoran. Apparently, the strong dependence of the fireblight pathogen on capsules requires the capacity for EPS synthesis in all growth stages in order to escape plant defence reactions.
梨火疫病菌合成胞外多糖(EPS)取决于环境和遗传因素。为了测定梨火疫病菌细胞培养物合成的酸性EPS——淀粉果胶聚糖的量,开发了一种使用十六烷基吡啶盐的比浊测定法。在固体培养基上生长的细菌产生的EPS还通过其含水量进行了表征。通过用来自相思子的异硫氰酸荧光素(FITC)标记的凝集素染色,对淀粉果胶聚糖荚膜进行原位可视化,该凝集素与EPS侧链的半乳糖残基反应。染色和比浊测定法适用于悬浮细胞培养物或菌落中的细胞,并且不需要任何纯化步骤。凝集素染色在荚膜可视化方面优于电子显微镜(EM)技术。对于EM,用聚阳离子铁蛋白稳定荚膜。与凝集素染色相反,在EM测定中仅发现一小部分细胞被EPS包裹。发现与赋予链霉素抗性的核糖体蛋白中的突变相关联,荚膜形成和淀粉果胶聚糖产量增加。此外,生长环境中存在山梨醇导致淀粉果胶聚糖的高合成。处于稳定生长期的细胞继续产生淀粉果胶聚糖。显然,火疫病病原体对荚膜的强烈依赖性要求在所有生长阶段都具备EPS合成能力,以便逃避植物防御反应。