Combined proteomics and transcriptomics analysis of Lactococcus lactis under different culture conditions

乳酸乳球菌 生物化学 果糖 生物 脂肪酸代谢 新陈代谢 果糖激酶 蛋白质组 蛋白质组学 脂肪酸 代谢途径 乳酸 棕榈酸 转录组 碳水化合物代谢 乳球菌 小桶 化学 细菌 乳酸链球菌素 计算生物学 发酵
作者
Liang Li,Xiaoyu Yang,Rui Hong,Fei Liu
出处
期刊:Journal of Dairy Science [Elsevier]
卷期号:104 (3): 2564-2580 被引量:5
标识
DOI:10.3168/jds.2020-18895
摘要

ABSTRACT

During industrial handling, Lactococcus lactis needs to adapt to different culture conditions by regulating its metabolic pathways. Modifying culture conditions may be an important way to control the biomass and functional metabolites of lactic acid bacteria. In this study, we identified the differentially expressed genes and proteins of L. lactis under different culture conditions by integrating transcriptomics and proteomics. We also analyzed the data using a bioinformatic approach to reveal the regulatory mechanisms affected by culture conditions. The transcriptome and proteome studies indicated that different culture conditions (fructose, calcium ion, palmitic acid, low pH) affected gene and protein expressions. The levels of differentially expressed proteins did not significantly correlate with the expression levels of their corresponding genes. Our results highlight the importance of comparative transcriptomics and proteomics analyses. In this study, fructose and pH significantly affected sugar metabolism of L. lactis. When lactose was replaced by fructose, fructokinase expression was promoted, and fructose metabolism was accelerated, whereas starch and sucrose metabolism and galactose metabolism system were inhibited. Low pH may be beneficial to homofermentation of L. lactis, which may also metabolize galactose through the tagatose pathway and the Leloir pathway. Fatty acid metabolism and fatty acid biosynthesis were significantly downregulated under calcium ion and palmitic acid. The purine metabolism was upregulated under fructose treatment and downregulated under palmitic acid treatment.
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