Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ, USA.
Department of Molecular Biology, Princeton University, Princeton, NJ, USA.
Nat Rev Microbiol. 2022 Jan;20(1):35-48. doi: 10.1038/s41579-021-00600-0. Epub 2021 Aug 2.
Metabolic engineering can have a pivotal role in increasing the environmental sustainability of the transportation and chemical manufacturing sectors. The field has already developed engineered microorganisms that are currently being used in industrial-scale processes. However, it is often challenging to achieve the titres, yields and productivities required for commercial viability. The efficiency of microbial chemical production is usually dependent on the physiological traits of the host organism, which may either impose limitations on engineered biosynthetic pathways or, conversely, boost their performance. In this Review, we discuss different aspects of microbial physiology that often create obstacles for metabolic engineering, and present solutions to overcome them. We also describe various instances in which natural or engineered physiological traits in host organisms have been harnessed to benefit engineered metabolic pathways for chemical production.
代谢工程在提高交通运输和化学制造业的环境可持续性方面可以发挥关键作用。该领域已经开发出了经过工程改造的微生物,这些微生物目前正在工业规模的过程中使用。然而,通常很难达到商业可行性所需的滴度、产率和生产力。微生物化学生产的效率通常取决于宿主生物体的生理特性,这些特性可能会对工程化生物合成途径施加限制,或者相反,提高它们的性能。在这篇综述中,我们讨论了微生物生理学的不同方面,这些方面经常给代谢工程带来障碍,并提出了解决这些障碍的方法。我们还描述了在宿主生物体中利用天然或工程化生理特性来造福工程代谢途径以进行化学生产的各种实例。