Cui Yanhua, Xu Tingting, Qu Xiaojun, Hu Tong, Jiang Xu, Zhao Chunyu
Department of Food Science and Engineering, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150090, China.
Institute of Microbiology, Heilongjiang Academy of Sciences, Harbin 150010, China.
Int J Mol Sci. 2016 Oct 12;17(10):1701. doi: 10.3390/ijms17101701.
is one of the most valuable homo-fermentative lactic acid bacteria, which, for a long time, has been widely used as a starter for the production of fermented dairy products. The key production characteristics of , for example the production of extracellular polysaccharide, proteolytic enzymes and flavor substances as well as acidifying capacity etc., have an important effect on the quality of dairy products. The acidification capacity of the strains determines the manufacturing time and quality of dairy products. It depends on the sugar utilization ability of strains. The production of extracellular polysaccharide is beneficial for improving the texture of dairy products. Flavor substances increase the acceptability of dairy products. The proteolytic activity of the strain influences not only the absorption of the nitrogen source, but also the formation of flavor substances. Different strains have obvious differences in production characteristics via long-time evolution and adaptation to environment. Gaining new strains with novel and desirable characteristics is an important long-term goal for researchers and the fermenting industry. The understanding of the potential molecular mechanisms behind important characteristics of different strains will promote the screening and breeding of excellent strains. In this paper, key technological and functional properties of different strains are discussed, including sugar metabolism, proteolytic system and amino acid metabolism, and polysaccharide and flavor substance biosynthesis. At the same time, diversity of genomes and plasmids of are presented. Advances in research on key production characteristics and molecular levels of will increase understanding of molecular mechanisms of different strains with different important characteristics, and improve the industrialization control level for fermented foods.
是最有价值的同型发酵乳酸菌之一,长期以来一直被广泛用作发酵乳制品生产的发酵剂。例如,其关键生产特性,如胞外多糖、蛋白水解酶和风味物质的产生以及酸化能力等,对乳制品质量有重要影响。菌株的酸化能力决定了乳制品的生产时间和质量。它取决于菌株的糖利用能力。胞外多糖的产生有利于改善乳制品的质地。风味物质提高了乳制品的可接受性。菌株的蛋白水解活性不仅影响氮源的吸收,还影响风味物质的形成。通过长期进化和对环境的适应,不同菌株在生产特性上有明显差异。获得具有新颖和理想特性的新菌株是研究人员和发酵行业的一个重要长期目标。了解不同菌株重要特性背后的潜在分子机制将促进优良菌株的筛选和育种。本文讨论了不同菌株的关键技术和功能特性,包括糖代谢、蛋白水解系统和氨基酸代谢,以及多糖和风味物质的生物合成。同时,展示了该菌株基因组和质粒的多样性。该菌株关键生产特性和分子水平的研究进展将增加对具有不同重要特性的不同菌株分子机制的理解,并提高发酵食品的工业化控制水平。