Dhar Niha, Razdan Sumeer, Rana Satiander, Bhat Wajid W, Vishwakarma Ram, Lattoo Surrinder K
Plant Biotechnology, CSIR - Indian Institute of Integrative Medicine Jammu Tawi, India.
Medicinal Chemistry, CSIR - Indian Institute of Integrative Medicine Jammu Tawi, India.
Front Plant Sci. 2015 Nov 27;6:1031. doi: 10.3389/fpls.2015.01031. eCollection 2015.
Withania somnifera, a multipurpose medicinal plant is a rich reservoir of pharmaceutically active triterpenoids that are steroidal lactones known as withanolides. Though the plant has been well-characterized in terms of phytochemical profiles as well as pharmaceutical activities, limited attempts have been made to decipher the biosynthetic route and identification of key regulatory genes involved in withanolide biosynthesis. This scenario limits biotechnological interventions for enhanced production of bioactive compounds. Nevertheless, recent emergent trends vis-à-vis, the exploration of genomic, transcriptomic, proteomic, metabolomics, and in vitro studies have opened new vistas regarding pathway engineering of withanolide production. During recent years, various strategic pathway genes have been characterized with significant amount of regulatory studies which allude toward development of molecular circuitries for production of key intermediates or end products in heterologous hosts. Another pivotal aspect covering redirection of metabolic flux for channelizing the precursor pool toward enhanced withanolide production has also been attained by deciphering decisive branch point(s) as robust targets for pathway modulation. With these perspectives, the current review provides a detailed overview of various studies undertaken by the authors and collated literature related to molecular and in vitro approaches employed in W. somnifera for understanding various molecular network interactions in entirety.
睡茄是一种多用途药用植物,是具有药学活性的三萜类化合物的丰富来源,这些三萜类化合物是称为睡茄内酯的甾体内酯。尽管该植物在植物化学特征和药学活性方面已得到充分表征,但在破译生物合成途径以及鉴定参与睡茄内酯生物合成的关键调控基因方面所做的尝试有限。这种情况限制了用于提高生物活性化合物产量的生物技术干预。然而,最近出现的趋势,即对基因组学、转录组学、蛋白质组学、代谢组学和体外研究的探索,为睡茄内酯生产的途径工程开辟了新的前景。近年来,各种关键途径基因已得到表征,并进行了大量的调控研究,这暗示了在异源宿主中生产关键中间体或终产物的分子电路的开发。通过破译作为途径调节的强大靶点的决定性分支点,还实现了另一个关键方面,即重定向代谢通量以将前体库导向增强的睡茄内酯生产。基于这些观点,本综述详细概述了作者进行的各种研究以及与用于全面理解各种分子网络相互作用的睡茄分子和体外方法相关的整理文献。