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合成生物学与曲霉相遇:下一代有机酸生产的工程策略

Synthetic biology meets Aspergillus: engineering strategies for next-generation organic acid production.

作者信息

Wu Yang, Xu Qian-Hui, Chen Zi-Lei, Yang Lin-Hui, Guo Dong-Sheng

机构信息

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, No. 1 Wenyuan Road, Nanjing, 210023, People's Republic of China.

出版信息

World J Microbiol Biotechnol. 2025 Jan 13;41(2):36. doi: 10.1007/s11274-024-04246-x.

Abstract

Organic acids constitute a vital category of chemical raw materials. They have extensive applications in industries such as polymers, food, and pharmaceuticals. Currently, industrial production predominantly relies on microbial fermentation. Aspergillus, due to its unique metabolic capabilities, has become an important microbial resource for organic acid production. In recent years, there has been a growing emphasis on genetic engineering of Aspergillus to increase its yield of organic acids. This review provides a comprehensive overview of the current advancement and future directions in the application of genetic engineering techniques to enhance organic production in Aspergillus, specifically highlighting achievement in reconstructing metabolic pathways for desired products, eliminating by-products, modifying regulatory pathways, and engineering mycelial morphology. Furthermore, this review also focuses on the strategies and genetic tools applied in Aspergillus, with particular emphasis on the potential applications and challenges of CRISPR-based biosensors in organic acid fermentation. By providing insights into these developments, we aim to offer theoretical guidance and innovative approaches for enhancing the efficiency of Aspergillus strains in industrial organic acid production.

摘要

有机酸是一类重要的化学原料。它们在聚合物、食品和制药等行业有着广泛的应用。目前,工业生产主要依赖微生物发酵。曲霉由于其独特的代谢能力,已成为生产有机酸的重要微生物资源。近年来,人们越来越重视曲霉的基因工程,以提高其有机酸产量。本文综述了利用基因工程技术提高曲霉中有机产物产量的当前进展和未来方向,特别强调了在重建目标产物代谢途径、消除副产物、修饰调控途径和改造菌丝形态方面取得的成果。此外,本文还重点介绍了曲霉中应用的策略和遗传工具,特别强调了基于CRISPR的生物传感器在有机酸发酵中的潜在应用和挑战。通过深入了解这些进展,我们旨在为提高曲霉菌株在工业有机酸生产中的效率提供理论指导和创新方法。

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