首页> 美国卫生研究院文献>Journal of Bacteriology >Effect of growth conditions on production of rhamnose-containing cell wall and capsular polysaccharides by strains of Lactobacillus casei subsp. rhamnosus.
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Effect of growth conditions on production of rhamnose-containing cell wall and capsular polysaccharides by strains of Lactobacillus casei subsp. rhamnosus.

机译:生长条件对干酪乳杆菌亚种菌株生产鼠李糖细胞壁和荚膜多糖的影响。鼠李糖。

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摘要

Strains of Lactobacillus casei subsp. rhamnosus possessing two cell wall polysaccharides, a hexosamine-containing H-polysaccharide and a rhamnose-containing R-polysaccharide, were examined for the effect of growth conditions on the production of these two components. In strain NCTC 6375, R- and H-polysaccharides accounted for an estimated 44 and 20%, respectively, of the cell wall for organisms grown in batch culture with glucose as the carbohydrate source. Growth on fructose-containing media reduced the amount of R-polysaccharide by approximately 50% without affecting the amount of H-polysaccharide. Subculture of fructose-grown organisms in glucose restored the original proportions of the two polysaccharides. Galactose- and sucrose-grown cells behaved similarly to glucose-grown cells with respect to polysaccharide production, whereas growth in rhamnose or ribose showed values close to those for fructose-grown cells. Continuous culture of strain NCTC 6375 for more than 100 generations showed a gradual and irreversible reduction of the R-polysaccharide to less than 5% of the cell wall and an increase of the H-polysaccharide to 40% of the cell wall. Other type culture strains of L. casei subsp. rhamnosus, NCIB 7473 and ATCC 7469, behaved similarly in batch and continuous culture. In contrast, strains of L. casei subsp. rhamnosus isolated at the Institute of Dental Research showed phenotypic stability with respect to the relative proportions of R- and H-polysaccharides in both batch and continuous culture. Changes in polysaccharide composition of type culture strains were also mirrored in changes in the immunogenicity of the two components and resistance to the rate of enzymic lysis of whole organisms. For L. casei subsp. rhamnosus strain NCTC 10302 the R-polysaccharide is present entirely as capsular material. The amount of R-polysaccharide produced was also markedly dependent on the carbohydrate component of the medium in batch culture and both dilution rate and nature of the limiting carbohydrate in continuous culture, varying over a 10-fold range, whereas the cell wall H-polysaccharide remained constant.
机译:干酪乳杆菌亚种菌株。检查了具有两种细胞壁多糖的鼠李糖,一种含六胺的H-多糖和一种鼠李糖的R-多糖,其生长条件对这两种组分产生的影响。在菌株NCTC 6375中,对于以葡萄糖为糖源分批培养的生物体,R-和H-多糖分别约占细胞壁的44%和20%。在含果糖的培养基上生长可将R-多糖的量减少约50%,而不会影响H-多糖的量。果糖生长的生物体在葡萄糖中的继代培养恢复了两种多糖的原始比例。就多糖产生而言,半乳糖和蔗糖生长的细胞的行为类似于葡萄糖生长的细胞,而鼠李糖或核糖的生长显示的值接近果糖生长的细胞。连续培养NCTC 6375菌株超过100代,显示R多糖逐渐减少且不可逆地减少至细胞壁的5%以下,H多糖增加至细胞壁的40%。干酪乳杆菌亚种的其他类型培养菌株。鼠李糖,NCIB 7473和ATCC 7469在分批和连续培养中表现相似。相反,干酪乳杆菌亚种。在分批培养和连续培养中,在牙科研究所分离的鼠李糖对R-和H-多糖的相对比例表现出表型稳定性。类型培养菌株的多糖组成的变化也反映在两种组分的免疫原性变化和对整个生物体的酶解速率的抗性上。对于干酪乳杆菌亚种。鼠李糖菌株NCTC 10302中,R-多糖完全作为荚膜材料存在。 R-多糖的产生量也明显取决于分批培养中培养基的碳水化合物成分,以及连续培养中限制碳水化合物的稀释率和性质(在10倍范围内变化),而细胞壁H-多糖保持不变。

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