生物生产
生物
计算生物学
基因
生物技术
合成生物学
吞吐量
代谢工程
计算机科学
生化工程
遗传学
工程类
电信
无线
作者
Jinho Yeom,Jong Seong Park,Seung-Woon Jung,Sumin Lee,Hyuk-Jin Kwon,Seung Min Yoo
标识
DOI:10.1080/07388551.2021.2007351
摘要
With the rapid advances in biotechnological tools and strategies, microbial cell factory-constructing strategies have been established for the production of value-added compounds. However, optimizing the tradeoff between the biomass, yield, and titer remains a challenge in microbial production. Gene regulation is necessary to optimize and control metabolic fluxes in microorganisms for high-production performance. Various high-throughput genetic engineering tools have been developed for achieving rational gene regulation and genetic perturbation, diversifying the cellular phenotype and enhancing bioproduction performance. In this paper, we review the current high-throughput genetic engineering tools for gene regulation. In particular, technological approaches used in a diverse range of genetic tools for constructing microbial cell factories are introduced, and representative applications of these tools are presented. Finally, the prospects for high-throughput genetic engineering tools for gene regulation are discussed.
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