Zhejiang Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, China.
Institute of Biotechnology, Hangzhou Academy of Agricultural Sciences, Hangzhou, China.
Fitoterapia. 2021 Jun;151:104860. doi: 10.1016/j.fitote.2021.104860. Epub 2021 Feb 11.
Glycyrrhizic acid, the main active ingredient of licorice, has good antibacterial, anti-tumor, anti-viral, anti-inflammatory, and immunostimulatory activities. However, the content of glycyrrhizic acid fluctuates greatly in different licorice cultivars, and production depends on plant sources, which greatly limits its development and applications. Therefore, increasing glycyrrhizic acid content has become a research priority. In recent years, regulation of the glycyrrhizic acid biosynthesis pathway has been analyzed, the downstream synthesis pathway in licorice has been fully investigated, some key genes have been cloned, polymorphisms have been studied, and the content of glycyrrhizic acid was shown to be regulated by environmental stimuli. This work has provided a basis for studying the regulation mechanism of the glycyrrhizic acid synthesis pathway. This review summarizes and discusses relevant research to provide a current understanding of the glycyrrhizic acid synthesis pathway and its regulation in licorice.
甘草酸是甘草的主要活性成分,具有良好的抗菌、抗肿瘤、抗病毒、抗炎和免疫刺激活性。然而,甘草酸的含量在不同甘草品种中波动很大,其生产依赖于植物来源,这极大地限制了它的发展和应用。因此,提高甘草酸的含量已成为研究的重点。近年来,对甘草酸生物合成途径的调控进行了分析,对甘草的下游合成途径进行了充分的研究,克隆了一些关键基因,研究了多态性,表明甘草酸的含量受环境刺激的调节。这项工作为研究甘草酸合成途径的调控机制提供了依据。本综述总结和讨论了相关研究,为了解甘草酸的合成途径及其在甘草中的调控提供了当前的认识。