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火麻仁:植物生物技术在繁殖和生物活性化合物生产方面的进展。

Ashwagandha: Advances in plant biotechnological approaches for propagation and production of bioactive compounds.

机构信息

Poona College of Pharmacy, Bharati Vidyapeeth Deemed to be University, Erandawane, Pune, 411038, India.

Poona College of Pharmacy, Bharati Vidyapeeth Deemed to be University, Erandawane, Pune, 411038, India.

出版信息

J Ethnopharmacol. 2021 May 10;271:113709. doi: 10.1016/j.jep.2020.113709. Epub 2020 Dec 17.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Withania somnifera is one of the most extensively delved Ayurvedic medicine. Apart from rejuvenation and increasing longevity, it has several other properties such as immunomodulation, anti-cancer, anti-stress and neuroprotection. Because of its prevailing use and increasing demand, it becomes prudent to scientifically evaluate and document both its propagation and production of desired phytoconstituents.

AIM OF THE STUDY

This review aims to highlight the research progress achieved on various biotechnological and tissue culture aspects of Withania somnifera and to cover up-to-date information regarding in-vitro propagation and production of withanolides.

MATERIALS AND METHODS

Significant published studies were identified for the years 2000-2018 using Elsevier-Science Direct, Pubmed and Google scholar and several research studies in our laboratory. Following keywords such as "plant extracts", "in vitro cultures", "callus and suspension culture", "micropropagation", "hairy root cultures" were used. Further, "Withania somnifera", "secondary metabolites specially withanolides", "molecular techniques" and "in vitro conservation" were used to cross-reference the keywords.

RESULTS

Ashwagandha comprises a broad spectrum of phytochemicals with a wide range of pharmacological properties. W. somnifera seeds have reduced viability and germination rates; thus, its regular cultivation method fails to achieve commercial demands mainly for the production of desired phytoconstituents. Cultivation of plant cells/tissues under in vitro conditions and development of various biotechnological strategies will help to build an attractive alternative to provide adequate quality and quantity raw materials. Recently, a large number of in vitro protocols has developed for W. somnifera not only for its propagation but for the production of secondary metabolites as well. Present work highlights a variety of biotechnological strategies both for prompt propagation and production of different bioactive secondary metabolites.

CONCLUSION

The present review focuses on the development and opportunities in various biotechnological approaches to accomplish the global demand of W. somnifera and its secondary metabolites. This review underlines the advances in plant biotechnological approaches for the propagation of W. somnifera and production of its bioactive compounds.

摘要

民族药理学相关性

睡茄是最广泛深入研究的阿育吠陀药物之一。除了恢复活力和延长寿命之外,它还有其他几种特性,如免疫调节、抗癌、抗应激和神经保护。由于其广泛使用和需求增加,有必要科学地评估和记录其传播和所需植物成分的生产。

研究目的

本综述旨在强调睡茄在各种生物技术和组织培养方面取得的研究进展,并涵盖有关其在体外繁殖和生产茄碱的最新信息。

材料和方法

使用 Elsevier-Science Direct、Pubmed 和 Google scholar 以及我们实验室的几项研究,确定了 2000-2018 年的重要已发表研究。使用了“植物提取物”、“体外培养”、“愈伤组织和悬浮培养”、“微繁殖”、“发根培养”等关键词。此外,还使用了“睡茄”、“特别是茄碱等次生代谢物”、“分子技术”和“体外保存”等关键词进行交叉参考。

结果

印度人参含有广泛的植物化学物质,具有广泛的药理特性。睡茄种子的活力和发芽率降低;因此,其常规种植方法无法满足商业需求,主要是为了生产所需的植物成分。在体外条件下培养植物细胞/组织并开发各种生物技术策略将有助于提供足够质量和数量的原材料,这是一种很有吸引力的替代方法。最近,已经开发了大量的睡茄体外培养方案,不仅用于其繁殖,还用于生产次生代谢物。本工作强调了多种生物技术策略,既可快速繁殖,又可生产不同的生物活性次生代谢物。

结论

本综述重点介绍了满足全球对睡茄及其次生代谢物的需求的各种生物技术方法的发展和机遇。本综述强调了植物生物技术方法在睡茄繁殖和生产其生物活性化合物方面的进展。

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