微生物群落培养的营养与保护环境因素

I. V. Boyarineva, I. S. Khamagaeva
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引用次数: 0

摘要

目前,利用高活性益生菌菌株获得具有较高生化和技术潜力的菌种在乳制品行业具有重要的应用前景。这类益生菌微生物包括丙酸细菌和嗜酸杆菌。以弗氏丙酸杆菌sh85和嗜酸乳杆菌为基础的联合体的建立,使开发具有高益生菌特性的专用食品和生物活性添加剂成为可能。以弗氏丙酸杆菌sh85和嗜酸乳杆菌的纯培养物为基础,以2:1的比例获得接种物,该接种物具有较高的生化活性,并且在乳培养基上共培养时可以提供高水平的酶促过程。对以乳清为基础的营养培养基进行了优化,以获得丙酸菌和嗜酸杆菌联合体的生物量。生物量生长的最佳温度范围为(30±2)℃。本文介绍了营养培养基中钴离子最优用量的选择结果。为了使弗氏丙酸杆菌Sh 85和嗜酸乳杆菌的活菌正常生长和维生素B12的生物合成高产,选择0.0025 g/l的氯化钴剂量。所得生物量的特点是高滴度的丙酸细菌和嗜酸杆菌活细胞1012 kfu /cm3。生物量中维生素B12的积累是活跃的。细胞生物质可作为直接消费的生物活性添加剂,也可在乳制品工业中作为细菌浓缩物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nutritional and protective environmental factors for microbial consortium cultivation
Currently, the use of highly active probiotic strains for obtaining consortia with high biochemical and technological potential is relevant and promising in the dairy industry. Such probiotic microorganisms include propionic acid bacteria and Acidophilus bacillus. The creation of a consortium based on Propionibacterium freudenreichii Sh 85 and L. acidophilus makes it possible to develop specialized food products and biologically active additives with high probiotic properties. An inoculate was obtained based on pure cultures of Propionibacterium freudenreichii Sh 85 and L. acidophilus in a ratio of 2:1, which has a high biochemical activity and can provide a high level of enzymatic processes when co-cultured on a dairy medium. The nutrient medium based on whey has been optimized for obtaining the biomass of a consortium of propionic acid bacteria and Acidophilus bacillus. The optimal temperature range for biomass growth is (30±2) °C. The article shows the results of the selection of the optimal amount of cobalt ions in the nutrient medium. For normal biomass growth, high yield of viable cells of Propionibacterium freudenreichii Sh 85 and L. acidophilus cultures and vitamin B12 biosynthesis, a dose of 0.0025 g/l cobalt chloride was selected. The resulting biomass is characterized by a high titer of viable cells of propionic acid bacteria and Acidophilus bacillus 1012 k.f.u./cm3. The accumulation of vitamin B12 is active in the biomass. Cellular biomass is applicable as a biologically active additive for direct consumption and in the dairy industry as a bacterial concentrate.
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