School of Life Sciences, Arizona State University, Tempe, AZ, United States.
School of Life Sciences, Arizona State University, Tempe, AZ, United States.
Adv Appl Microbiol. 2020;111:33-87. doi: 10.1016/bs.aambs.2020.01.002. Epub 2020 Feb 8.
The rapid development in the field of metabolic engineering has enabled complex modifications of metabolic pathways to generate a diverse product portfolio. Manipulating substrate uptake and product export is an important research area in metabolic engineering. Optimization of transport systems has the potential to enhance microbial production of renewable fuels and chemicals. This chapter comprehensively reviews the transport systems critical for microbial production as well as current genetic engineering strategies to improve transport functions and thus production metrics. In addition, this chapter highlights recent advancements in engineering microbial efflux systems to enhance cellular tolerance to industrially relevant chemical stress. Lastly, future directions to address current technological gaps are discussed.
代谢工程领域的快速发展使得对代谢途径进行复杂修饰以生成多样化的产品组合成为可能。操纵基质摄取和产物输出是代谢工程中的一个重要研究领域。优化运输系统有可能提高微生物对可再生燃料和化学品的生产能力。本章全面综述了微生物生产中关键的运输系统以及当前用于改善运输功能从而提高生产指标的遗传工程策略。此外,本章还重点介绍了工程化微生物外排系统以提高细胞对工业相关化学胁迫的耐受性方面的最新进展。最后,讨论了应对当前技术差距的未来方向。