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Expression analysis of Cell wall invertase under abiotic stress conditions influencing specialized metabolism in Catharanthus roseus

机译:非生物胁迫条件下长春花细胞壁转化酶表达分析

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摘要

Catharanthus roseus is a commercial source for anti-cancer terpenoid indole alkaloids (TIAs: vincristine and vinblastine). Inherent levels of these TIAs are very low, hence research studies need to focus on enhancing their levels in planta. Since primary metabolism provides precursors for specialized-metabolism, elevating the former can achieve higher amounts of the latter. Cell Wall Invertase (CWIN), a key enzyme in sucrose-metabolism catalyses the breakdown of sucrose into glucose and fructose, which serve as carbon-skeleton for specialized-metabolites. Understanding CWIN regulation could unravel metabolic-engineering approaches towards enhancing the levels of TIAs in planta. Our study is the first to characterize CWIN at gene-expression level in the medicinal plant, C. roseus. The CWINs and their inter-relationship with sucrose and TIA metabolism was studied at gene and metabolite levels. It was found that sucrose-supplementation to C. roseus leaves significantly elevated the monomeric TIAs (vindoline, catharanthine) and their corresponding genes. This was further confirmed in cross-species, wherein Nicotiana benthamiana leaves transiently-overexpressing CrCWIN2 showed significant upregulation of specialized-metabolism genes: NbPAL2, Nb4CL, NbCHS, NbF3H, NbANS, NbHCT and NbG10H. The specialized metabolites- cinnamic acid, coumarin, and fisetin were significantly upregulated. Thus, the present study provides a valuable insight into metabolic-engineering approaches towards augmenting the levels of therapeutic TIAs.
机译:长春花是抗癌萜类吲哚生物碱(TIA:长春新碱和长春碱)的商业来源。这些TIA的固有水平非常低,因此研究需要集中于提高其在植物体内的水平。由于初级代谢为专门代谢提供了前体,因此提高前者可以实现更高水平的后者。细胞壁转化酶(CWIN)是蔗糖代谢中的关键酶,可催化蔗糖分解为葡萄糖和果糖,这些糖可作为专门代谢物的碳骨架。了解CWIN调节可能会揭示代谢工程方法,以提高植物体内TIA的水平。我们的研究是第一个在药用植物C. roseus中以基因表达水平表征CWIN的研究。在基因和代谢物水平上研究了CWIN及其与蔗糖和TIA代谢的相互关系。发现蔗糖对玫瑰色念珠菌叶片的补充显着提高了单体TIA(长春新碱,长春新碱)及其相应基因。这在跨物种中得到了进一步证实,其中本氏烟草叶片短暂过量表达CrCWIN2显示了专门代谢基因的显着上调:NbPAL2,Nb4CL,NbCHS,NbF3H, NbANS NbHCT NbG10H 。专门的代谢产物肉桂酸,香豆素和非瑟定明显上调。因此,本研究提供了有关代谢工程方法以增加治疗性TIA水平的宝贵见解。

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