Feng Jingxian, Huang Doudou, Yang Yingbo, Chen Junfeng, Qiu Shi, Lv Zongyou, Ma Xueqi, Li Yuanyu, Li Rongrong, Xiao Ying, Chen Wansheng
Research and Development Center of Chinese Medicine Resources and Biotechnology, The Ministry of Education (MOE) Key Laboratory for Standardization of Chinese Medicines, Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Jiangsu Kanion Pharmaceutical Co., Ltd, Jiangsu, 222001, Lianyungang, China.
Mol Hortic. 2021 Dec 14;1(1):17. doi: 10.1186/s43897-021-00021-w.
Isatis indigotica Fort. (Chinese woad) is a species with an ancient and well-documented history as an indigo dye and medicinal plant. It is often confused with Isatis tinctoria L. (European woad), a medicinal plant in Europe. Here, the differences between I. indigotica and I. tinctoria are systematically described. The usage development history, clinical applications and pharmacological activities, and chemical components of I. indigotica are also summarized. Lignans, indole alkaloids, and their corresponding derivatives have been identified as the major active ingredients of I. indigotica and are associated with anti-viral, anti-inflammatory, anti-cancer, and other health-promoting activities. Notable progress has been made in understanding the biosynthetic pathway and regulation mechanism of lignans and indole alkaloids in I. indigotica, the results from which should facilitate the process of targeted metabolic engineering or synthetic biology. Moreover, multiple biotechnology methods such as polyploid breeding and genetic engineering have been used with I. indigotica to result in, for example, greater yields, higher levels of bioactive component accumulation, and enhanced stress tolerance to salt, drought, and insects. Some issues require additional analyses, and suggestions for future research on I. indigotica are also discussed.
菘蓝是一种作为靛蓝染料和药用植物有着悠久且记载详尽历史的物种。它常与欧洲的药用植物欧洲菘蓝混淆。在此,系统地描述了菘蓝与欧洲菘蓝之间的差异。还总结了菘蓝的应用发展历史、临床应用、药理活性以及化学成分。木脂素、吲哚生物碱及其相应衍生物已被确定为菘蓝的主要活性成分,并与抗病毒、抗炎、抗癌及其他促进健康的活动相关。在了解菘蓝中木脂素和吲哚生物碱的生物合成途径及调控机制方面已取得显著进展,其结果应有助于靶向代谢工程或合成生物学的进程。此外,诸如多倍体育种和基因工程等多种生物技术方法已应用于菘蓝,例如带来更高产量、更高水平的生物活性成分积累以及增强对盐、干旱和昆虫的胁迫耐受性。一些问题需要进一步分析,并且还讨论了关于菘蓝未来研究的建议。