凝固酶杆菌
乳酸
发酵
食品科学
渗透压
渗透性休克
甜高粱
化学
拉伤
代谢工程
微生物
生物化学
生物技术
高粱
细菌
生物
农学
酶
解剖
基因
遗传学
作者
Yongli Yan,Wen-Wen Shan,Chong Zhang,Yufan Wu,Xin‐Hui Xing,Jihong Chen,Wei Hu
标识
DOI:10.1016/j.biortech.2024.130648
摘要
Open unsterile fermentation of the low-cost non-food crop, sweet sorghum, is an economically feasible lactic acid biosynthesis process. However, hyperosmotic stress inhibits microbial metabolism and lactic acid biosynthesis, and engineering strains with high osmotic tolerance is challenging. Herein, heavy ion mutagenesis combined with osmotic pressure enrichment was used to engineer a hyperosmotic-tolerant Bacillus coagulans for L-lactic acid production. The engineered strain had higher osmotic pressure tolerance, when compared with the parental strain, primarily owing to its improved properties such as cell viability, cellular antioxidant capacity, and NADH supply. In a pilot-scale open unsterile fermentation using sweet sorghum juice as a feedstock, the engineered strain produced 94 g/L L-lactic acid with a yield of 91 % and productivity of 6.7 g/L/h, and optical purity of L-lactic acid at the end of fermentation was 99.8 %. In short, this study provided effective and low-cost approach to produce polymer-grade L-lactic acid.
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