College of Food Science and Engineering, Northwest A&F University, Yangling, 712100, China.
Food Microbiol. 2023 Sep;114:104288. doi: 10.1016/j.fm.2023.104288. Epub 2023 Apr 19.
Although high gravity brewing technology has been widely used for beer industries due to its economic benefits, yeast cells are subjected to multiple environmental stresses throughout the fermentation process. Eleven bioactive dipeptides (LH, HH, AY, LY, IY, AH, PW, TY, HL, VY, FC) were selected to evaluate their effects on cell proliferation, cell membrane defense system, antioxidant defense system and intracellular protective agents of lager yeast against ethanol-oxidation cross-stress. Results showed that the multiple stresses tolerance and fermentation performance of lager yeast were enhanced by bioactive dipeptides. Cell membrane integrity was improved by bioactive dipeptides through altering the structure of macromolecular compounds of the cell membrane. Intracellular reactive oxygen species (ROS) accumulation was significantly decreased by bioactive dipeptides, especially for FC, decreasing by 33.1%, compared with the control. The decrease of ROS was closely related to the increase of mitochondrial membrane potential, intracellular antioxidant enzyme activities including superoxide dismutase (SOD), catalase (CAT) and peroxidase (POD), and glycerol level. In addition, bioactive dipeptides could regulate the expression of key genes (GPD1, OLE1, SOD2, PEX11, CTT1, HSP12) to enhance the multilevel defense systems under ethanol-oxidation cross-stress. Therefore, bioactive dipeptides should be potentially efficient and feasible bioactive ingredients to improve the multiple stresses tolerance of lager yeast during high gravity fermentation.
尽管高浓酿造技术因其经济效益而被广泛应用于啤酒行业,但酵母细胞在整个发酵过程中会受到多种环境胁迫。本研究选择了 11 种生物活性二肽(LH、HH、AY、LY、IY、AH、PW、TY、HL、VY、FC)来评估它们对拉格酵母细胞增殖、细胞膜防御系统、抗氧化防御系统和细胞内保护剂的影响,以提高其对乙醇氧化交叉胁迫的耐受性。结果表明,生物活性二肽能增强拉格酵母的多重胁迫耐受性和发酵性能。生物活性二肽通过改变细胞膜大分子化合物的结构来提高细胞膜的完整性。生物活性二肽能显著降低细胞内活性氧(ROS)的积累,尤其是 FC,与对照组相比,降低了 33.1%。ROS 的减少与线粒体膜电位的增加、细胞内抗氧化酶活性(超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和过氧化物酶(POD))以及甘油水平的增加密切相关。此外,生物活性二肽可以调节关键基因(GPD1、OLE1、SOD2、PEX11、CTT1、HSP12)的表达,以增强拉格酵母在乙醇氧化交叉胁迫下的多层次防御系统。因此,生物活性二肽可能是提高高浓发酵过程中拉格酵母多重胁迫耐受性的有效且可行的生物活性成分。