Jiang Lina, Gao Yifei, Han Leiqin, Zhang Wenxuan, Fan Pengxiang
Department of Horticulture, Zijingang Campus, Zhejiang University, Hangzhou, China.
Key Laboratory of Horticultural Plants Growth and Development, Agricultural Ministry of China, Hangzhou, China.
Front Plant Sci. 2023 Jul 28;14:1220062. doi: 10.3389/fpls.2023.1220062. eCollection 2023.
Plant synthetic biology has emerged as a powerful and promising approach to enhance the production of value-added metabolites in plants. Flavonoids, a class of plant secondary metabolites, offer numerous health benefits and have attracted attention for their potential use in plant-based products. However, achieving high yields of specific flavonoids remains challenging due to the complex and diverse metabolic pathways involved in their biosynthesis. In recent years, synthetic biology approaches leveraging transcription factors and enzyme diversity have demonstrated promise in enhancing flavonoid yields and expanding their production repertoire. This review delves into the latest research progress in flavonoid metabolic engineering, encompassing the identification and manipulation of transcription factors and enzymes involved in flavonoid biosynthesis, as well as the deployment of synthetic biology tools for designing metabolic pathways. This review underscores the importance of employing carefully-selected transcription factors to boost plant flavonoid production and harnessing enzyme promiscuity to broaden flavonoid diversity or streamline the biosynthetic steps required for effective metabolic engineering. By harnessing the power of synthetic biology and a deeper understanding of flavonoid biosynthesis, future researchers can potentially transform the landscape of plant-based product development across the food and beverage, pharmaceutical, and cosmetic industries, ultimately benefiting consumers worldwide.
植物合成生物学已成为一种强大且有前景的方法,用于提高植物中增值代谢产物的产量。黄酮类化合物是一类植物次生代谢产物,具有多种健康益处,并因其在植物基产品中的潜在用途而受到关注。然而,由于其生物合成涉及复杂多样的代谢途径,实现特定黄酮类化合物的高产仍然具有挑战性。近年来,利用转录因子和酶多样性的合成生物学方法已显示出在提高黄酮类化合物产量和扩大其生产种类方面的潜力。本综述深入探讨了黄酮类化合物代谢工程的最新研究进展,包括参与黄酮类化合物生物合成的转录因子和酶的鉴定与操作,以及用于设计代谢途径的合成生物学工具的应用。本综述强调了采用精心挑选的转录因子来提高植物黄酮类化合物产量以及利用酶的多效性来拓宽黄酮类化合物多样性或简化有效代谢工程所需的生物合成步骤的重要性。通过利用合成生物学的力量以及对黄酮类化合物生物合成的更深入理解,未来的研究人员有可能改变食品饮料、制药和化妆品行业基于植物的产品开发格局,最终使全球消费者受益。