生化工程
稳健性(进化)
酵母
代谢工程
限制
合成生物学
工业生物技术
工业生产
生物技术
工业微生物学
发酵
计算机科学
生物
计算生物学
工程类
生物化学
经济
凯恩斯经济学
酶
基因
机械工程
作者
Zijian Wan,Haibo Hu,Kang Liu,Yangyi Qiao,Feng Guo,Chao Wang,Fengxue Xin,Wenming Zhang,Min Jiang
标识
DOI:10.1080/07388551.2024.2326677
摘要
As an important cell factory, industrial yeast has been widely used for the production of compounds ranging from bulk chemicals to complex natural products. However, various adverse conditions including toxic products, extreme pH, and hyperosmosis etc., severely restrict microbial growth and metabolic performance, limiting the fermentation efficiency and diminishing its competitiveness. Therefore, enhancing the tolerance and robustness of yeasts is critical to ensure reliable and sustainable production of metabolites in complex industrial production processes. In this review, we provide a comprehensive review of various strategies for improving the tolerance of yeast cells, including random mutagenesis, system metabolic engineering, and material-mediated immobilization cell technology. It is expected that this review will provide a new perspective to realize the response and intelligent regulation of yeast cells to environmental stresses.
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