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In Vitro Propagation Phytochemical and Neuropharmacological Profiles of Bacopa monnieri (L.) Wettst.: A Review

机译:Bacopa monnieri(L.)Wettst。的体外繁殖植物化学和神经药理作用:综述

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摘要

has been used as a reputed drug in the Indian traditional ayurvedic system for centuries. This medicinal herb with important phytopharmaceuticals has been popularly known as “Brahmi”. In recent years, has been extensively studied for its bioactive constituents, constituents responsible for memory enhancing effect, and also its diverse other useful effects. It possesses many pharmacological activities such as antioxidant, gastrointestinal, endocrine, antimicrobial, anti-inflammatory etc. The plant has been also used for the treatment of neurological and neuropsychiatric diseases. Due to its multipurpose therapeutic potential, micropropagation using axillary meristems and de novo organogenesis has been extensively studied in the species and is being reviewed. High frequency direct shoot organogenesis can be induced in excised leaf and internode explants in the absence of exogenous phytohormones and the rate of induction is enhanced in the presence of exogenous cytokinins, supplements, growth regulators, etc. Using explants from tissue culture raised plants, direct shoot regeneration leading to production of more than 100 rooted plants/explant within 8–12 weeks period with 85%–100% survival in the field after acclimatization can be expected following optimized protocols. Bioreactor based micropropagation was found to increase the multiplication rate of shoot cultures for the commercial propagation of plants. The maximum content of bacosides has been recorded in shoot biomass using an airlift bioreactor system. Further studies for the biosynthesis of bacosides and other secondary metabolites need to be conducted in the species utilizing untransformed shoot cultures in bioreactors.
机译:几个世纪以来,它一直被用作印度传统阿育吠陀系统中的知名药物。这种具有重要植物药材的草药被普遍称为“布拉米”。近年来,已经对其生物活性成分,负责记忆增强作用的成分以及其多种其他有用作用进行了广泛研究。它具有许多药理活性,例如抗氧化剂,胃肠道,内分泌,抗菌,消炎等。该植物还被用于治疗神经系统疾病和神经精神疾病。由于其多用途的治疗潜力,已在该物种中对使用腋生分生组织和从头器官发生的微繁殖进行了广泛研究,并且正在接受审查。在没有外源植物激素的情况下,可以在切除的叶片和节间外植体中诱导高频直接芽器官发生,并且在存在外源细胞分裂素,补品,生长调节剂等的情况下,诱导速率得到提高。使用组织培养的外植体直接通过优化的方案,可以预期在8-12周内可再生出新芽,从而在8-12周内产生100多个有根植物/植株,田间存活率达85%-100%。发现基于生物反应器的微繁殖可增加枝条培养物的繁殖速率,以用于植物的商业繁殖。使用空运生物反应器系统已在茎生物量中记录了cos子苷的最大含量。利用生物反应器中未转化的芽培养物,需要对该物种中的岩藻糖苷和其他次生代谢产物进行生物合成的进一步研究。

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