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代谢工程提高醋酸菌生物制造效率的研究进展与展望

Metabolic engineering to improve the biomanufacturing efficiency of acetic acid bacteria: advances and prospects.

机构信息

State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi, PR China.

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology Shandong Academy of Sciences, Jinan, PR China.

出版信息

Crit Rev Biotechnol. 2020 Jun;40(4):522-538. doi: 10.1080/07388551.2020.1743231. Epub 2020 Mar 25.

Abstract

With the high tolerance for acetic acid and abundant multifunctional enzymes, acetic acid bacteria (AAB), as valuable biocatalysts, exhibit great advantages during industrial acetic acid production and value-added chemical fermentation. However, low biomass and a low production rates arising from acid stress remains major hurdles in industrial processes. Engineering AAB with excellent properties is expected to obtain economically viable production and facilitates their biotechnological applications. Here, the investigation of acetic acid-tolerance mechanisms and metabolic features is discussed, and effective targets are provided for the metabolic engineering of AAB. Next, we review the advances in improving AAB and compare these advances with improvement to other model acid-tolerant microorganisms. Furthermore, future directions involving the combination of systems biology and synthetic biology to achieve efficient biomanufacturing in AAB are highlighted.

摘要

由于具有较高的耐乙酸能力和丰富的多功能酶,醋酸菌(AAB)作为有价值的生物催化剂,在工业乙酸生产和增值化学发酵中具有很大的优势。然而,由于酸胁迫,生物量低和产率低仍然是工业过程中的主要障碍。通过工程化具有优良特性的 AAB,可以获得经济可行的生产,并促进它们的生物技术应用。在这里,讨论了耐乙酸机制和代谢特征的研究,并为 AAB 的代谢工程提供了有效的目标。接下来,我们回顾了提高 AAB 的进展,并将这些进展与其他耐酸模式微生物的改进进行了比较。此外,还强调了将系统生物学和合成生物学相结合以实现 AAB 中高效生物制造的未来方向。

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