Chen Shi-Lin, Sun Wei, Wu Wen-Guang, Chen Wan-Sheng, Wang Ying, Dong Yang, Liu Yi-Fei, Xu Zhi-Chao, Sun Chao, Yin Qing-Gang, Li Yong-Qing, Luo Ming, Xiao Ying, Wan Hui-Hua
Key Laboratory of Beijing for Identification and Safety Evaluation of Chinese Medicine,Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
Department of Pharmacy,Changzheng Hospital,Second Military Medical University Shanghai 200003,China Research and Development Center of Chinese Medicine Resources and Biotechnology,Shanghai University of Traditional Chinese Medicine Shanghai 201203,China.
Zhongguo Zhong Yao Za Zhi. 2020 Dec;45(23):5577-5588. doi: 10.19540/j.cnki.cjcmm.20201016.601.
Unraveling the genetic basis of medicinal plant metabolism and developmental traits is a long-standing goal for pharmacologists and plant biologists. This paper discusses the definition of molecular genetics of medicinal plants, which is an integrative discipline with medicinal plants as the research object. This discipline focuses on the heredity and variation of medicinal plants, and elucidates the relationship between the key traits of medicinal plants(active compounds, yield, resistance, etc.) and genotype, studies the structure and function, heredity and variation of medicinal plant genes mainly at molecular level, so as to reveal the molecular mechanisms of transmission, expression and regulation of genetic information of medicinal plants. Specifically, we emphasize on three major aspects of this discipline.(1)Individual and population genetics of medicinal plants, this part mainly highlights the genetic mechanism of the domestication, the individual genomics at the species level, and the formation of genetic diversity of medicinal plants.(2)Elucidation of biosynthetic pathways of active compounds and their evolutionary significance. This part summarizes the biosynthesis, diversity and molecular evolution of active compounds in medicinal plants.(3) Molecular mechanisms that shaping the key agronomic traits by internal and external factors. This part focuses on the accumulation and distribution of active compounds within plants and the regulation of metabolic network by environmental factors. Finally, we prospect the future direction of molecular genetics of medicinal plants based on the rapid development of multi-omics technology, as well as the application of molecular genetics in the future strategies to achieve conservation and breeding of medicinal plants and efficient biosynthesis of active compounds.
揭示药用植物代谢和发育性状的遗传基础一直是药理学家和植物生物学家的长期目标。本文讨论了药用植物分子遗传学的定义,它是以药用植物为研究对象的一门综合性学科。该学科关注药用植物的遗传与变异,阐明药用植物关键性状(活性成分、产量、抗性等)与基因型之间的关系,主要在分子水平研究药用植物基因的结构与功能、遗传与变异,以揭示药用植物遗传信息传递、表达和调控的分子机制。具体而言,我们着重强调该学科的三个主要方面。(1)药用植物的个体与群体遗传学,这部分主要突出驯化的遗传机制、物种水平的个体基因组学以及药用植物遗传多样性的形成。(2)活性成分生物合成途径及其进化意义的阐明。这部分总结了药用植物中活性成分的生物合成、多样性及分子进化。(3)内外因素塑造关键农艺性状的分子机制。这部分关注植物体内活性成分的积累与分布以及环境因素对代谢网络的调控。最后,基于多组学技术的快速发展,我们展望了药用植物分子遗传学的未来方向,以及分子遗传学在未来药用植物保护与育种策略及活性成分高效生物合成中的应用。