首页> 外文期刊>Applied and Environmental Microbiology >Indication that the Nitrogen Source Influences Both Amount and Size of Exopolysaccharides Produced by Streptococcus thermophilus LY03 and Modelling of the Bacterial Growth and Exopolysaccharide Production in a Complex Medium
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Indication that the Nitrogen Source Influences Both Amount and Size of Exopolysaccharides Produced by Streptococcus thermophilus LY03 and Modelling of the Bacterial Growth and Exopolysaccharide Production in a Complex Medium

机译:氮源影响嗜热链球菌LY03产生的胞外多糖的数量和大小的指示以及复杂培养基中细菌生长和胞外多糖产生的模型

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Streptococcus thermophilus LY03 is a yogurt strain producing the same exopolysaccharide material in both milk and MRS broth. Actually, two types of exopolysaccharides are produced simultaneously. The two exopolysaccharides are identical in monomer composition (galactose and glucose in a 4:1 ratio) but differ in molecular size. Gel permeation chromatography revealed a high-molecular-mass exopolysaccharide (1.8 × 106) and a low-molecular-mass exopolysaccharide (4.1 × 105). Both exopolysaccharides can be isolated from the fermentation broth separately. The proportion in which they are produced is strongly dependent on the carbonitrogen ratio of the fermentation broth. A shift from a high-molecular-mass exopolysaccharide to a low-molecular-mass exopolysaccharide was observed with increasing initial complex nitrogen concentrations. All necessary biokinetic parameters to study the kinetics of S. thermophilus LY03 fermentations were obtained from a mathematical model which describes both S. thermophilus LY03 growth and exopolysaccharide production and degradation. The model is valid with various initial complex nitrogen concentrations and can be applied to simulate exopolysaccharide production in a milk medium.
机译:嗜热链球菌LY03是一种酸奶菌株,在牛奶和MRS肉汤中产生相同的胞外多糖物质。实际上,两种类型的胞外多糖是同时产生的。两种胞外多糖的单体组成相同(半乳糖和葡萄糖的比例为4:1),但分子大小不同。凝胶渗透色谱显示高分子量外多糖(1.8×106)和低分子量外多糖(4.1×105)。两种胞外多糖都可以分别从发酵液中分离出来。它们产生的比例在很大程度上取决于发酵液的碳/氮比。随着初始复合氮浓度的增加,观察到了从高分子量胞外多糖向低分子量胞外多糖的转变。从描述嗜热链球菌LY03生长以及胞外多糖产生和降解的数学模型中获得了研究嗜热链球菌LY03发酵动力学的所有必要的生物动力学参数。该模型在各种初始复杂氮浓度下均有效,并可用于模拟牛奶培养基中胞外多糖的产生。

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