School of Life Sciences, Anhui University, Hefei, 230601, China.
Key Laboratory of Human Microenvironment and Precision Medicine of Anhui Higher Education Institutes, Anhui University, Hefei, 230601, Anhui, China.
Microb Cell Fact. 2023 Jan 30;22(1):20. doi: 10.1186/s12934-023-02025-1.
Advanced DNA synthesis, biosensor assembly, and genetic circuit development in synthetic biology and metabolic engineering have reinforced the application of filamentous bacteria, yeasts, and fungi as promising chassis cells for chemical production, but their industrial application remains a major challenge that needs to be solved.
As important chassis strains, filamentous microorganisms can synthesize important enzymes, chemicals, and niche pharmaceutical products through microbial fermentation. With the aid of metabolic engineering and synthetic biology, filamentous bacteria, yeasts, and fungi can be developed into efficient microbial cell factories through genome engineering, pathway engineering, tolerance engineering, and microbial engineering. Mutant screening and metabolic engineering can be used in filamentous bacteria, filamentous yeasts (Candida glabrata, Candida utilis), and filamentous fungi (Aspergillus sp., Rhizopus sp.) to greatly increase their capacity for chemical production. This review highlights the potential of using biotechnology to further develop filamentous bacteria, yeasts, and fungi as alternative chassis strains.
In this review, we recapitulate the recent progress in the application of filamentous bacteria, yeasts, and fungi as microbial cell factories. Furthermore, emphasis on metabolic engineering strategies involved in cellular tolerance, metabolic engineering, and screening are discussed. Finally, we offer an outlook on advanced techniques for the engineering of filamentous bacteria, yeasts, and fungi.
在合成生物学和代谢工程中,先进的 DNA 合成、生物传感器组装和遗传电路开发,强化了丝状细菌、酵母和真菌作为有前途的化工生产底盘细胞的应用,但它们的工业应用仍然是一个需要解决的主要挑战。
作为重要的底盘菌株,丝状微生物可以通过微生物发酵合成重要的酶、化学品和利基药物产品。借助代谢工程和合成生物学,丝状细菌、酵母和真菌可以通过基因组工程、途径工程、耐受性工程和微生物工程,被开发成高效的微生物细胞工厂。在丝状细菌、丝状酵母(光滑球拟酵母、产朊假丝酵母)和丝状真菌(曲霉属、根霉属)中,可以通过突变筛选和代谢工程,极大地提高它们的化工生产能力。本综述强调了利用生物技术进一步开发丝状细菌、酵母和真菌作为替代底盘菌株的潜力。
在本文中,我们总结了丝状细菌、酵母和真菌作为微生物细胞工厂的最新应用进展。此外,还重点讨论了细胞耐受性、代谢工程和筛选中涉及的代谢工程策略。最后,我们对丝状细菌、酵母和真菌的工程先进技术进行了展望。