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具有半乳糖发酵表型的嗜热链球菌重组菌株中的半乳糖代谢与荚膜形成

Galactose metabolism and capsule formation in a recombinant strain of Streptococcus thermophilus with a galactose-fermenting phenotype.

作者信息

Robitaille G, Moineau S, St-Gelais D, Vadeboncoeur C, Britten M

机构信息

Food Research and Development Centre, Agriculture and Agri-Food Canada, St-Hyacinthe, Quebec, Canada, J2S 8E3.

出版信息

J Dairy Sci. 2007 Sep;90(9):4051-7. doi: 10.3168/jds.2007-0140.

Abstract

The capsule-producing, galactose-negative Streptococcus thermophilus MR-1C strain was first transformed with a low-copy plasmid containing a functional galK gene from Streptococcus salivarius to generate a recombinant galactose-fermenting Strep. thermophilus strain named MR-AAC. Then, we compared the functional properties of Strep. thermophilus MR-AAC with those of the parent MR-1C strain when used as starter for fermented products and cheese. In lactose-supplemented laboratory medium, MR-AAC metabolized galactose, but only when the amount of lactose was less than 0.1% (wt/vol). After 7 h of fermentation, the medium was almost depleted of galactose. The parent strain, MR-1C, showed the same pattern, except that the concentration of galactose decreased by only 25% during the same period. It was found that, during milk fermentation and Mozzarella cheese production, the galactose-fermenting phenotype was not expressed by MR-AAC and this strain expelled galactose into the medium at a level similar to the parent MR-1C strain. In milk and in lactose-supplemented medium, capsular exopolysaccharide production occurred mainly during the late exponential phase and the stationary growth phase with similar kinetics between MR-1C and MR-AAC.

摘要

首先,用含有来自唾液链球菌的功能性galK基因的低拷贝质粒转化产荚膜、半乳糖阴性的嗜热链球菌MR-1C菌株,以产生重组半乳糖发酵嗜热链球菌菌株,命名为MR-AAC。然后,我们比较了嗜热链球菌MR-AAC与亲本MR-1C菌株在用作发酵产品和奶酪发酵剂时的功能特性。在添加乳糖的实验室培养基中,MR-AAC代谢半乳糖,但仅当乳糖量小于0.1%(重量/体积)时。发酵7小时后,培养基中的半乳糖几乎耗尽。亲本菌株MR-1C表现出相同的模式,只是在此期间半乳糖浓度仅下降了25%。研究发现,在牛奶发酵和马苏里拉奶酪生产过程中,MR-AAC没有表达半乳糖发酵表型,并且该菌株向培养基中排出半乳糖的水平与亲本MR-1C菌株相似。在牛奶和添加乳糖的培养基中,荚膜胞外多糖的产生主要发生在指数后期和稳定生长期,MR-1C和MR-AAC之间的动力学相似。

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