Tiwari Sekhar, Acharya Puja, Solanki Bharat, Sharma Anish Kumar, Rawat Sandeep
Department of Biotechnology, School of Sciences, P. P. Savani University, Surat, Gujarat India.
Sikkim Regional Centre, G. B. Pant National Institute of Himalayan Environment, Pangthang, Gangtok, Sikkim India.
3 Biotech. 2023 Jun;13(6):190. doi: 10.1007/s13205-023-03578-z. Epub 2023 May 13.
The genus belongs to the family Ranunculaceae, is endowed with more than 350 species on the earth. Medicinally important aconitine type of diterpenoid alkaloids are the characteristic compounds in most of the species. The present review endeavored the major research carried out in the field of genetic resource characterization, pharmacological properties, phytochemistry, major factors influencing quantity, biosynthetic pathways and processing methods for recovery of active ingredients, variety improvement, propagation methods, and important metabolite production through cell/organ culture of various species. More than 450 derivatives of aconitine-type C19 and C20-diterpenoid alkaloids along with a few other non-alkaloidal compounds, such as phenylpropanoids, flavonoids, terpenoids, and fatty acids, have been identified in the genus. A few species and their common diterpenoid alkaloid compounds are also well characterized for analgesic, inflammatory and cytotoxic properties. However, the different isolated compound needs to be validated for supporting other traditional therapeutical uses of the plant species. Aconitine alkaloids shared common biosynthesis pathway, but their diversification mechanism remains unexplored in the genus. Furthermore, the process needs to be developed on secondary metabolite recovery, mass-scale propagation methods, and agro-technologies for maintaining the quality of products. Many species are losing their existence in nature due to over-exploitation or anthropogenic factors; thus, temporal monitoring of the population status in its habitat, and suitable management programs for ascertaining conservation needs to be developed.
该属植物属于毛茛科,全球有350多种。具有重要药用价值的乌头碱型二萜生物碱是该属大多数物种的特征性化合物。本综述致力于对该属植物在遗传资源特征、药理特性、植物化学、影响产量的主要因素、生物合成途径、活性成分提取的加工方法、品种改良、繁殖方法以及通过细胞/器官培养生产重要代谢产物等领域的主要研究。已在该属中鉴定出450多种乌头碱型C19和C20二萜生物碱衍生物以及一些其他非生物碱化合物,如苯丙素类、黄酮类、萜类和脂肪酸。一些物种及其常见的二萜生物碱化合物在镇痛、抗炎和细胞毒性方面也有很好的特性。然而,不同的分离化合物需要进一步验证,以支持该植物物种的其他传统治疗用途。乌头碱生物碱具有共同的生物合成途径,但其多样化机制在该属中仍未得到探索。此外,还需要开发次生代谢产物提取、大规模繁殖方法和农业技术,以保持产品质量。由于过度开发或人为因素,许多物种在自然界中正在消失;因此,需要对其栖息地的种群状况进行定期监测,并制定合适的管理计划以确定保护需求。