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首页> 外文期刊>Biochemical and Biophysical Research Communications >RNA interference targeting CYP76AH1 in hairy roots of Salvia miltiorrhiza reveals its key role in the biosynthetic pathway of tanshinones
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RNA interference targeting CYP76AH1 in hairy roots of Salvia miltiorrhiza reveals its key role in the biosynthetic pathway of tanshinones

机译:RNA干扰针对丹参的毛茸茸的根源Cyp76ah1揭示了它在丹参酮的生物合成途径中的关键作用

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Plant cytochrome P450s (CYPs) are well known as the largest family of enzymes that contribute to both primary metabolism and the chemical diversity of plant secondary metabolites. It is important to elucidate the in vivo role of CYPs in secondary metabolism, in order to apply them in the production of valuable metabolites in medicinal plants via metabolic engineering. CYP76AH1 has been suggested to catalyze the conversion of the carbon skeleton miltiradiene into the intermediate ferruginol, which is involved in the biosynthesis of tanshinones, the chief bioactive ingredients of Salvia miltiorrhiza. However, its role in planta remains to be elucidated. In this work, we constructed a CYP76AH1 RNAi system for hairy roots. Metabolic analysis of RNAi-AH1 hairy root lines showed a significantly increased accumulation of miltiradiene compared to the control lines. At the same time, the concentration of ferruginol decreased revealing the in vivo catalytic activity of CYP76AHl. The content of tanshinones decreased significantly after silencing of CYP76AH1, which verified its key role in the biosynthesis of tanshinones, and indicated that it could be used as a target for metabolic engineering. (C) 2016 Elsevier Inc. All rights reserved.
机译:植物细胞色素P450s(CYPS)是众所周知的酶家族,有助于初级代谢和植物次级代谢产物的化学多样性。重要的是要阐明Cyps在次生新陈代谢中的Cyps体内作用,以便在通过代谢工程中应用它们在药用植物中有价值的代谢物中。 CYP76AH1已经建议催化碳骨架Miltiradiene的转化为中间铁蛋白,其参与丹参酮的生物合成,丹参的主要生物活性成分。然而,它在Planta中的作用仍有待阐明。在这项工作中,我们构建了一种用于毛状根的CYP76AH1 RNAi系统。与控制线相比,RNAi-AH1毛状根线的代谢分析显示了Miltiradiene的显着增加。同时,铁蛋白的浓度降低了CYP76AHL的体内催化活性。 CYP76AH1沉默后,丹参酮的含量显着降低,验证了其在丹参酮的生物合成中的关键作用,并表明它可以用作代谢工程的目标。 (c)2016年Elsevier Inc.保留所有权利。

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