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Production of Fatty Acid-Derived Valuable Chemicals in Synthetic Microbes

机译:合成微生物中脂肪酸衍生的贵重化学品的生产

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摘要

Fatty acid derivatives, such as hydroxy fatty acids, fatty alcohols, fatty acid methyl/ethyl esters, and fatty alka(e)nes, have a wide range of industrial applications including plastics, lubricants, and fuels. Currently, these chemicals are obtained mainly through chemical synthesis, which is complex and costly, and their availability from natural biological sources is extremely limited. Metabolic engineering of microorganisms has provided a platform for effective production of these valuable biochemicals. Notably, synthetic biology-based metabolic engineering strategies have been extensively applied to refactor microorganisms for improved biochemical production. Here, we reviewed: (i) the current status of metabolic engineering of microbes that produce fatty acid-derived valuable chemicals, and (ii) the recent progress of synthetic biology approaches that assist metabolic engineering, such as mRNA secondary structure engineering, sensor-regulator system, regulatable expression system, ultrasensitive input/output control system, and computer science-based design of complex gene circuits. Furthermore, key challenges and strategies were discussed. Finally, we concluded that synthetic biology provides useful metabolic engineering strategies for economically viable production of fatty acid-derived valuable chemicals in engineered microbes.
机译:脂肪酸衍生物,例如羟基脂肪酸,脂肪醇,脂肪酸甲基/乙基酯和脂肪碱(e)nes,具有广泛的工业应用,包括塑料,润滑剂和燃料。当前,这些化学品主要通过化学合成获得,这是复杂且昂贵的,并且它们从天然生物来源的可获得性极为有限。微生物的代谢工程为有效生产这些有价值的生化试剂提供了平台。值得注意的是,基于合成生物学的代谢工程策略已被广泛应用于重构微生物以改善生化生产。在这里,我们回顾了:(i)产生脂肪酸衍生的有价值的化学物质的微生物的代谢工程的现状,以及(ii)辅助代谢工程的合成生物学方法(例如mRNA二级结构工程,传感器-调节系统,可调节表达系统,超灵敏输入/输出控制系统以及基于计算机科学的复杂基因电路设计。此外,讨论了关键挑战和策略。最后,我们得出结论,合成生物学为工程微生物以经济可行的方式生产脂肪酸衍生的有价值的化学物质提供了有用的代谢工程策略。

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