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The Potential Biotechnological Applications of the Exopolysaccharide Produced by the Halophilic Bacterium Halomonas almeriensis

机译:嗜盐细菌Halomonas almeriensis产生的胞外多糖的潜在生物技术应用

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摘要

We have studied the extracellular polysaccharide (EPS) produced by the type strain, M8T, of the halophilic bacterium Halomonas almeriensis, to ascertain whether it might have any biotechnological applications. All the cultural parameters tested influenced both bacterial growth and polysaccharide production. EPS production was mainly growth-associated and under optimum environmental and nutritional conditions M8T excreted about 1.7 g of EPS per litre of culture medium (about 0.4 g of EPS per gram of dry cell weight). Analysis by anion-exchange chromatography and high-performance size-exclusion chromatography indicated that the exopolysaccharide was composed of two fractions, one of 6.3 × 106 and another of 1.5 × 104 Daltons. The monosaccharide composition of the high-molecular-weight fraction was mannose (72% w/w), glucose (27.5% w/w) and rhamnose (0.5% w/w). The low-molecular-weight fraction contained mannose (70% w/w) and glucose (30% w/w). The EPS has a substantial protein fraction (1.1% w/w) and was capable of emulsifying several hydrophobic substrates, a capacity presumably related to its protein content. The EPS produced solutions of low viscosity with pseudoplastic behaviour. It also had a high capacity for binding some cations. It contained considerable quantities of sulphates (1.4% w/w), an unusual feature in bacterial polysaccharides. All these characteristics render it potentially useful as a biological agent, bio-detoxifier and emulsifier.
机译:我们已经研究了由嗜盐细菌Halomonas almeriensis的M8 T 型菌株产生的胞外多糖(EPS),以确定其是否具有任何生物技术应用价值。测试的所有文化参数都影响细菌的生长和多糖的产生。 EPS的产生主要与生长相关,并且在最佳的环境和营养条件下,M8 T 每升培养基排出约1.7 g EPS(每克干细胞重量约0.4 g EPS)。阴离子交换色谱法和高效排阻色谱法分析表明,胞外多糖由两部分组成,一个为6.3×10 6 ,另一个为1.5×10 4 道尔顿。高分子量级分的单糖组成为甘露糖(72%w / w),葡萄糖(27.5%w / w)和鼠李糖(0.5%w / w)。低分子量级分包含甘露糖(70%w / w)和葡萄糖(30%w / w)。 EPS具有很大的蛋白质含量(1.1%w / w),并且能够乳化几种疏水性底物,容量可能与其蛋白质含量有关。 EPS产生具有假塑性行为的低粘度溶液。它也具有结合某些阳离子的高能力。它含有大量的硫酸盐(1.4%w / w),这是细菌多糖中的一个异常特征。所有这些特性使其有可能用作生物制剂,生物解毒剂和乳化剂。

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