Kaur Prabhjot, Pandey Devendra Kumar, Gupta R C, Kumar Vijay, Dwivedi Padmanabh, Sanyal Rupa, Dey Abhijit
Department of Biotechnology, Faculty of Technology and Sciences, Lovely Professional University, Phagwara, Punjab, India.
Department of Botany, Punjabi University, Patiala, Punjab, 147002, India.
Appl Microbiol Biotechnol. 2021 Jun;105(11):4427-4451. doi: 10.1007/s00253-021-11345-4. Epub 2021 May 26.
The genus Swertia (Family: Gentianaceae) has cosmopolitan distribution which is present in almost all the continents except South America and Australia. Swertia genus has been renowned as one of the potent herbal drugs in the British, American, and Chinese Pharmacopeias as well as well-documented in the Indian traditional medicinal systems, viz. Ayurveda, Siddha, and Unani. Many species of this genus have therapeutic properties and have been used traditionally in the treatment of a number of health ailments viz. hepatitis, diabetes, inflammation, bacillary dysentery, cancer, malaria, fever etc. This genus is industrially important medicinal plant that has been used as a principal component in numerous marketed herbal/ polyherbal formulations. Medicinal usage of Swertia is endorsed to the miscellaneous compounds viz. xanthones, irridoids, seco-irridoids, and triterpenoids. A chain of systematic isolation of bio-active compounds and their diverse range of pharmacological effects during last 15-20 years proved this genus as industrially important plant. Due to the various practices of the Swertia species, annual demand is more than 100 tons per year for this important herb which is continuously increasing 10% annually. The market value rises 10% by the year as there is increased demand in national and international market resulted in adulteration of many Swertia spp. due to paucity of agricultural practices, exomorphological, phytochemical, and molecular characterization. Thus, efficient biotechnology methods are prerequisite for the mass production of authentic species, sustainable production of bio-active compounds and ex situ conservation. A chain of systematic biotechnological interventions in Swertia herb during last 20 years cover the assessment of genetic diversity, in vitro sustainable production of bio-active compounds and mass propagation of elite genotypes via direct and indirect organogenesis. This review attempts to present the comprehensive assessment on biotechnological process made in Swertia over the past few years. KEY POINTS: • Critical and updated assessment on biotechnological aspects of Swertia spp. • In vitro propagation and genetic diversity assessment in Swertia spp. • Biosynthesis and sustainable production of secondary metabolites in Swertia spp.
獐牙菜属(龙胆科)分布于全球,几乎存在于除南美洲和澳大利亚之外的所有大陆。獐牙菜属在《英国药典》《美国药典》和《中国药典》中均被视为有效的草药之一,在印度传统医学体系阿育吠陀医学、悉达医学和尤那尼医学中也有详细记载。该属的许多物种都具有治疗特性,传统上被用于治疗多种健康疾病,如肝炎、糖尿病、炎症、细菌性痢疾、癌症、疟疾、发烧等。该属是具有重要工业价值的药用植物,已被用作众多市售草药/复方草药制剂的主要成分。獐牙菜的药用价值归因于多种化合物,即氧杂蒽酮、环烯醚萜、裂环环烯醚萜和三萜类化合物。在过去15至20年中,一系列对生物活性化合物的系统分离及其多样的药理作用证明了该属是具有重要工业价值的植物。由于獐牙菜属植物的各种用途,这种重要草药的年需求量每年超过100吨,且每年持续增长10%。由于国内外市场需求增加,其市场价值每年上涨10%,导致许多獐牙菜属物种因缺乏农业种植方法、外部形态学、植物化学和分子特征鉴定而出现掺假现象。因此,高效的生物技术方法是大量生产正宗物种、可持续生产生物活性化合物和迁地保护的先决条件。在过去20年中,对獐牙菜属草药进行的一系列系统生物技术干预涵盖了遗传多样性评估、生物活性化合物的体外可持续生产以及通过直接和间接器官发生对优良基因型进行大规模繁殖。本综述试图对过去几年獐牙菜属生物技术过程进行全面评估。要点:• 对獐牙菜属生物技术方面的批判性和最新评估。• 獐牙菜属的离体繁殖和遗传多样性评估。• 獐牙菜属次生代谢产物的生物合成和可持续生产。