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Isolation of Halotolerant, Thermotolerant, Facultative Polymer-Producing Bacteria and Characterization of the Exopolymer

机译:耐盐,耐高温,兼性聚合物生产细菌的分离和外聚合物的表征

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Over 200 bacterial strains were selected for anaerobic growth at 50°C and extracellular polysaccharide production in a sucrose-mineral salts medium with NaNO3 and up to 10% NaCl. The predominant cell type was an encapsulated gram-positive, motile, facultative sporeforming rod similar to Bacillus species. Strain SP018 grew and produced the polysaccharide on a variety of substrates at salinities up to 12% NaCl. Good polymer production only occurred anaerobically and was optimal between 4 and 10% NaCl. The ethanol-precipitated SP018 polymer was a charged heteropolysaccharide that contained glucose, mannose, arabinose, ribose, and low levels of allose and glucosamine. The SP018 polymer showed pseudoplastic behavior, was resistant to shearing, and had a higher viscosity at dilute concentrations and at elevated temperatures than xanthan gum. High-ionic-strength solutions reversibly decreased the viscosity of SP018 polymer solutions. The bacterium and the associated polymer have many properties that make them potentially useful for in situ microbially enhanced oil recovery processes.
机译:选择了超过200个细菌菌株在50°C下厌氧生长,并在含有NaNO3和最高达10%NaCl的蔗糖矿物盐培养基中生产细胞外多糖。主要的细胞类型是类似于芽孢杆菌属物种的包囊的革兰氏阳性,能动,兼性孢子形成棒。 SP018菌株在多种底物上生长并以高达12 %NaCl的盐度产生多糖。好的聚合物生产仅在厌氧条件下发生,并且在4%至10%的NaCl之间最佳。乙醇沉淀的SP018聚合物是带电荷的杂多糖,含有葡萄糖,甘露糖,阿拉伯糖,核糖以及少量的阿糖和葡萄糖胺。与黄原胶相比,SP018聚合物表现出假塑性行为,耐剪切,并且在稀浓度和高温下具有更高的粘度。高离子强度溶液可逆地降低SP018聚合物溶液的粘度。细菌和相关的聚合物具有许多特性,使其有可能用于原位微生物增强的采油过程。

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