代谢工程
生化工程
合成生物学
工业微生物学
酵母
生物技术
可用的
工业生物技术
酿酒酵母
生物
系统生物学
计算生物学
计算机科学
工程类
生物化学
发酵
酶
万维网
作者
Shuobo Shi,Yu Chen,Jens Nielsen
标识
DOI:10.1146/annurev-biophys-070924-103134
摘要
Microbial cell factories have been developed to produce various compounds in a sustainable and economically viable manner. The yeast Saccharomyces cerevisiae has been used as a platform cell factory in industrial biotechnology with numerous advantages, including ease of operation, rapid growth, and tolerance for various industrial stressors. Advances in synthetic biology and metabolic models have accelerated the design-build-test-learn cycle in metabolic engineering, significantly facilitating the development of yeast strains with complex phenotypes, including the redirection of metabolic fluxes to desired products, the expansion of the spectrum of usable substrates, and the improvement of the physiological properties of strain. Strains with enhanced titer, rate, and yield are now competing with traditional petroleum-based industrial approaches. This review highlights recent advances and perspectives in the metabolic engineering of yeasts for the production of a variety of compounds, including fuels, chemicals, proteins, and peptides, as well as advancements in synthetic biology tools and mathematical modeling.
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