Panax notoginseng: panoramagram of phytochemical and pharmacological properties, biosynthesis, and regulation and production of ginsenosides

Author:

Wei Guangfei1,Zhang Guozhuang1,Li Mengzhi2,Zheng Yuqing3,Zheng Wenke4,Wang Bo5,Zhang Zhaoyu1,Zhang Xiao3,Huang Ziying1,Wei Tengyun3,Shi Liping1,Chen Shilin16,Dong Linlin1

Affiliation:

1. China Academy of Chinese Medical Sciences State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, Key Laboratory of Beijing for Identification and Safety Evaluation of Chinese Medicine, Institute of Chinese Materia Medica, , No.16 Nanxiaojie, Dongzhimennei Ave., Beijing, 100700, China

2. Nanyang Institute of Technology , Nanyang, No.80, Changjiang Road, Wulibao Street, Wancheng District, 473000, China

3. Zhangzhou Pien Tze Huang Pharmaceutical Co., Ltd , No. 1 Amber Road, Xiangcheng District, Zhangzhou, Fujian, 363099, China

4. Tianjin University of Traditional Chinese Medicine , No. 312, Anshan West Road, Nankai District, Tianjin, 301617, China

5. Hubei Institute for Drug Control , No.54, Dingziqiao Road, Zhongnan Road, Wuchang District, Wuhan, 430012, China

6. Chengdu University of Traditional Chinese Medicine Institute of Herbgenomics, , No. 37, 12 Qiao Road, Jinniu District, Chengdu, 611137, China

Abstract

Abstract Panax notoginseng is a famous perennial herb widely used as material for medicine and health-care food. Due to its various therapeutic effects, research work on P. notoginseng has rapidly increased in recent years, urging a comprehensive review of research progress on this important medicinal plant. Here, we summarize the latest studies on the representative bioactive constituents of P. notoginseng and their multiple pharmacological effects, like cardiovascular protection, anti-tumor, and immunomodulatory activities. More importantly, we emphasize the biosynthesis and regulation of ginsenosides, which are the main bioactive ingredients of P. notoginseng. Key enzymes and transcription factors (TFs) involved in the biosynthesis of ginsenosides are reviewed, including diverse CYP450s, UGTs, bHLH, and ERF TFs. We also construct a transcriptional regulatory network based on multi-omics data and predicted candidate TFs mediating the biosynthesis of ginsenosides. Finally, the current three major biotechnological approaches for ginsenoside production are highlighted. This review covers advances in the past decades, providing insights into quality evaluation and perspectives for the rational utilization and development of P. notoginseng resources. Modern omics technologies facilitate the exploration of the molecular mechanisms of ginsenoside biosynthesis, which is crucial to the breeding of novel P. notoginseng varieties. The identification of functional enzymes for biosynthesizing ginsenosides will lead to the formulation of potential strategies for the efficient and large-scale production of specific ginsenosides.

Funder

and the Scientific Research Project of the Hainan Academician Innovation Platform

Fundamental Research Funds for the Central Public Welfare Research Institutes

National Key R&D Plan

Publisher

Oxford University Press (OUP)

Reference153 articles.

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