Advances in biotin biosynthesis and biotechnological production in microorganisms

Jia-Run Zhao, Si-Qi Zuo, Feng Xiao, Feng-Zhu Guo, Lu-Yi Chen, Ke Bi, Dong-Yuan Cheng, Zhi-Nan Xu
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Abstract

Biotin, also known as vitamin H or B7, acts as a crucial cofactor in the central metabolism processes of fatty acids, amino acids, and carbohydrates. Biotin has important applications in food additives, biomedicine, and other fields. While the ability to synthesize biotin de novo is confined to microorganisms and plants, humans and animals require substantial daily intake, primarily through dietary sources and intestinal microflora. Currently, chemical synthesis stands as the primary method for commercial biotin production, although microbial biotin production offers an environmentally sustainable alternative with promising prospects. This review presents a comprehensive overview of the pathways involved in de novo biotin synthesis in various species of microbes and insights into its regulatory and transport systems. Furthermore, diverse strategies are discussed to improve the biotin production here, including mutation breeding, rational metabolic engineering design, artificial genetic modification, and process optimization. The review also presents the potential strategies for addressing current challenges for industrial-scale bioproduction of biotin in the future. This review is very helpful for exploring efficient and sustainable strategies for large-scale biotin production.

Abstract Image

生物素生物合成和微生物生物技术生产方面的进展
生物素又称维生素 H 或 B7,是脂肪酸、氨基酸和碳水化合物代谢过程中的重要辅助因子。生物素在食品添加剂、生物医学和其他领域有着重要的应用。虽然生物素的从头合成能力仅限于微生物和植物,但人类和动物每天都需要摄入大量生物素,主要是通过膳食来源和肠道微生物菌群。目前,化学合成是商业生物素生产的主要方法,尽管微生物生物素生产提供了一种环境可持续发展的替代方法,而且前景广阔。本综述全面概述了不同种类微生物中从头合成生物素的途径,并深入探讨了生物素的调控和运输系统。此外,还讨论了改进生物素生产的各种策略,包括突变育种、合理的代谢工程设计、人工基因修饰和过程优化。综述还介绍了应对当前挑战的潜在策略,以便在未来实现生物素的工业规模生物生产。这篇综述对于探索大规模生物素生产的高效和可持续战略非常有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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