Sheng Huakang, Sun Xinxiao, Yan Yajun, Yuan Qipeng, Wang Jia, Shen Xiaolin
State Key Laboratory of Chemical Raesource Engineering, Beijing University of Chemical Technology, Beijing, China.
College of Engineering, University of Georgia, Athens, GA, United States.
Front Bioeng Biotechnol. 2020 Oct 7;8:589069. doi: 10.3389/fbioe.2020.589069. eCollection 2020.
Flavonoids are a class of secondary metabolites found in plant and fungus. They have been widely used in food, pharmaceutical, and nutraceutical industries owing to their significant biological activities, such as antiaging, antioxidant, anti-inflammatory, and anticancer. However, the traditional approaches for the production of flavonoids including chemical synthesis and plant extraction involved hazardous materials and complicated processes and also suffered from low product titer and yield. Microbial synthesis of flavonoids from renewable biomass such as glucose and xylose has been considered as a sustainable and environmentally friendly method for large-scale production of flavonoids. Recently, construction of microbial cell factories for efficient biosynthesis of flavonoids has gained much attention. In this article, we summarize the recent advances in microbial synthesis of flavonoids including flavanones, flavones, isoflavones, flavonols, flavanols, and anthocyanins. We put emphasis on developing pathway construction and optimization strategies to biosynthesize flavonoids and to improve their titer and yield. Then, we discuss the current challenges and future perspectives on successful strain development for large-scale production of flavonoids in an industrial level.
黄酮类化合物是一类存在于植物和真菌中的次生代谢产物。由于其具有显著的生物活性,如抗衰老、抗氧化、抗炎和抗癌等,它们已被广泛应用于食品、制药和营养保健品行业。然而,传统的黄酮类化合物生产方法,包括化学合成和植物提取,涉及有害物质和复杂的过程,并且产品效价和产量也很低。利用葡萄糖和木糖等可再生生物质进行黄酮类化合物的微生物合成,已被认为是一种可持续且环保的大规模生产黄酮类化合物的方法。最近,构建用于高效生物合成黄酮类化合物的微生物细胞工厂受到了广泛关注。在本文中,我们总结了黄酮类化合物微生物合成的最新进展,包括黄烷酮、黄酮、异黄酮、黄酮醇、黄烷醇和花青素。我们着重于开发途径构建和优化策略,以生物合成黄酮类化合物并提高其效价和产量。然后,我们讨论了在工业规模上成功开发用于大规模生产黄酮类化合物的菌株目前面临的挑战和未来前景。