Zhang Yue, Luan Haoni, Qiu Wenhan, Zhang Xue, Wang Huaishun, Liu Mengyu, Song Peng
School of Pharmaceutical Sciences and Food Engineering, Liaocheng University, Liaocheng, China.
World J Microbiol Biotechnol. 2025 Mar 28;41(4):111. doi: 10.1007/s11274-025-04321-x.
Vanillin, often referred to as the 'Queen of Spices', is extensively utilized in the food industry, pharmaceutical manufacturing, cosmetic formulations, agricultural crop protection, and tobacco processing owing to its distinctive flavor properties. In recent years, the biosynthesis of vanillin from suitable substrates through microbial transformation technology has emerged as a prominent research topic, driven by the increasing global demand for "green and natural" products and the growing awareness of environmental protection. In this review, we examine the three primary synthesis methods of vanillin: natural extraction, chemical synthesis, and biosynthesis, and elucidate the principles, developmental history, and current technological advancements of each approach. Building on this foundation, the review emphasizes recent advancements in vanillin biosynthesis, analyzes the specific applications, technological innovations, and potential advantages of microbial conversion strategies in vanillin production, and addresses the challenges of low conversion efficiency and weak strain tolerance in microbial synthesis. Furthermore, this review offers insights into the future development trends of vanillin biosynthesis. It proposes research recommendations for optimizing microbial strains, enhancing bioconversion efficiency, and achieving industrial-scale production, aiming to serve as a valuable reference for the continued advancement of vanillin biosynthesis technology.
香兰素常被称为“香料皇后”,因其独特的风味特性,在食品工业、制药生产、化妆品配方、农作物保护和烟草加工中得到广泛应用。近年来,在全球对“绿色天然”产品需求不断增加以及环保意识日益增强的推动下,通过微生物转化技术从合适底物生物合成香兰素已成为一个突出的研究课题。在本综述中,我们研究了香兰素的三种主要合成方法:天然提取、化学合成和生物合成,并阐明了每种方法的原理、发展历程和当前技术进展。在此基础上,本综述强调了香兰素生物合成的最新进展,分析了微生物转化策略在香兰素生产中的具体应用、技术创新和潜在优势,并探讨了微生物合成中转化效率低和菌株耐受性弱的挑战。此外,本综述还对香兰素生物合成的未来发展趋势提供了见解。它提出了优化微生物菌株、提高生物转化效率和实现工业规模生产的研究建议,旨在为香兰素生物合成技术的持续发展提供有价值的参考。