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Designing Microbial Cell Factories for the Production of Chemicals

代谢工程 生化工程 代谢途径 可持续生产 生产(经济) 可再生资源 生物技术 可再生能源 工程类 生物 生态学 经济 内分泌学 新陈代谢 宏观经济学 生物化学
作者
Jae Sung Cho,Gi Bae Kim,Hyunmin Eun,Cheon Woo Moon,Sang Yup Lee
出处
期刊:JACS Au [American Chemical Society]
卷期号:2 (8): 1781-1799 被引量:207
标识
DOI:10.1021/jacsau.2c00344
摘要

The sustainable production of chemicals from renewable, nonedible biomass has emerged as an essential alternative to address pressing environmental issues arising from our heavy dependence on fossil resources. Microbial cell factories are engineered microorganisms harboring biosynthetic pathways streamlined to produce chemicals of interests from renewable carbon sources. The biosynthetic pathways for the production of chemicals can be defined into three categories with reference to the microbial host selected for engineering: native-existing pathways, nonnative-existing pathways, and nonnative-created pathways. Recent trends in leveraging native-existing pathways, discovering nonnative-existing pathways, and designing de novo pathways (as nonnative-created pathways) are discussed in this Perspective. We highlight key approaches and successful case studies that exemplify these concepts. Once these pathways are designed and constructed in the microbial cell factory, systems metabolic engineering strategies can be used to improve the performance of the strain to meet industrial production standards. In the second part of the Perspective, current trends in design tools and strategies for systems metabolic engineering are discussed with an eye toward the future. Finally, we survey current and future challenges that need to be addressed to advance microbial cell factories for the sustainable production of chemicals.
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