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溶纤维丁酸弧菌菌株产生的细胞外多糖的一些化学和物理性质。

Some chemical and physical properties of extracellular polysaccharides produced by Butyrivibrio fibrisolvens strains.

作者信息

Ha Y W, Stack R J, Hespell R B, Gordon S H, Bothast R J

机构信息

Fermentation Biochemistry Unit, National Center for Agricultural Utilization Research, U.S. Department of Agriculture, Peoria, Illinois 61604.

出版信息

Appl Environ Microbiol. 1991 Jul;57(7):2016-20. doi: 10.1128/aem.57.7.2016-2020.1991.

Abstract

Most strains of Butyrivibrio fibrisolvens are known to produce extracellular polysaccharides (EPs). However, the rheological and functional properties of these EPs have not been determined. Initially, 26 strains of Butyrivibrio were screened for EP yield and apparent viscosities of cell-free supernatants. Yields ranged from less than 1.0 to 16.3 mg per 100 mg of glucose added to the culture. Viscosities ranged from 0.71 to 5.44 mPa.s. Five strains (CF2d, CF3, CF3a, CE51, and H10b) were chosen for further screening. The apparent viscosity of the EP from each of these strains decreased by only 50 to 60% when the shear rate was increased from 20 to 1,000 s-1. Strain CE51 produced the EP having the highest solution viscosity. A detailed comparison of shear dependency of the EP from strain CF3 with xanthan gum showed that this EP was less shear sensitive than xanthan gum and, at a shear rate of 1,000 s-1, more viscous. EPs from strains CF3 and H10b were soluble over a wide range of pH (1 to 13) in 80% (vol/vol) ethanol-water or in 1% (wt/vol) salt solutions. The pH of 1% EP solutions was between 4.5 and 5.5. Addition of acid increased solution viscosities, whereas addition of base decreased viscosity. EPs from strains CF3, CE51, and H10b displayed qualitatively similar infrared spectra. Calcium and sodium were the most abundant minerals in the three EPs. The amounts of magnesium, calcium, and iron varied considerably among the EPs, but the potassium contents remained relatively constant.

摘要

已知大多数溶纤维丁酸弧菌菌株可产生细胞外多糖(EPs)。然而,这些EPs的流变学和功能特性尚未确定。最初,对26株丁酸弧菌进行了筛选,以检测其EPs产量和无细胞上清液的表观粘度。产量范围为每添加到培养物中的100 mg葡萄糖少于1.0 mg至16.3 mg。粘度范围为0.71至5.44 mPa·s。选择了5株菌株(CF2d、CF3、CF3a、CE51和H10b)进行进一步筛选。当剪切速率从20 s-1增加到1000 s-1时,这些菌株中每一种的EPs的表观粘度仅降低50%至60%。菌株CE51产生的EPs具有最高的溶液粘度。对菌株CF3的EPs与黄原胶的剪切依赖性进行的详细比较表明,该EPs比黄原胶对剪切更不敏感,并且在1000 s-1的剪切速率下更粘稠。菌株CF3和H10b的EPs在80%(体积/体积)乙醇-水或1%(重量/体积)盐溶液中的广泛pH范围(1至13)内可溶。1% EP溶液的pH值在4.5至5.5之间。添加酸会增加溶液粘度,而添加碱会降低粘度。菌株CF3、CE51和H10b的EPs显示出定性相似的红外光谱。钙和钠是这三种EPs中含量最丰富的矿物质。镁、钙和铁的含量在这些EPs中差异很大,但钾含量保持相对恒定。

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