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首页> 外文期刊>Acta Physiologiae Plantarum >Molecular mechanism of elicitor-induced tanshinone accumulation in Salvia miltiorrhiza hairy root cultures.
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Molecular mechanism of elicitor-induced tanshinone accumulation in Salvia miltiorrhiza hairy root cultures.

机译:丹参毛状根培养物中诱导物诱导丹参酮积累的分子机制。

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摘要

To develop an optimal bioprocess for the production of tanshinone which is mainly used for the treatment of cardiocerebral vascular disease, the tanshinone biosynthetic pathway regulation must be better understood. In this paper, expression of tanshinone biosynthetic pathway related genes as well as tanshinone accumulation in Salvia miltiorrhiza hairy root cultures were investigated, in response to biotic and abiotic elicitors, respectively. Our results showed tanshinone accumulation in S. miltiorrhiza hairy roots was highly regulated by the coordination of the expression of several genes involved in tanshinone biosynthesis pathway. Our results showed a positive correlation between gene expression and tanshinone accumulation, suggesting that tanshinone accumulation may be the result of the coexpression up-regulation of several genes involved in tanshinone biosynthesis under the treatment of various elicitors. Meantime, SmHMGR, SmDXS2, SmFPPS, SmGGPPS and SmCPS were identified as the potential key enzymes in the pathway for targeted metabolic engineering to increase accumulation of tanshinone in S. miltiorrhiza hairy roots. This is the first report integrating comprehensively the transcript and metabolite biosynthesis of tanshinone in S. miltiorrhiza hairy roots.Digital Object Identifier http://dx.doi.org/10.1007/s11738-012-0940-z
机译:为了开发主要用于治疗心脑血管疾病的丹参酮生产的最佳生物工艺,必须更好地了解丹参酮生物合成途径的调控。本文研究了丹参酮生物合成途径相关基因的表达以及丹参酮在丹参毛状根培养物中的积累,分别针对生物和非生物激发子。我们的结果显示丹参酮在 S中积累。丹参酮生物合成途径中涉及的几种基因的表达被高度协调地调节着毛状根。我们的结果表明基因表达与丹参酮积累之间存在正相关,这表明丹参酮积累可能是在各种激发子处理下参与丹参酮生物合成的几个基因共表达上调的结果。同时,将 SmHMGR , SmDXS2 , SmFPPS , SmGGPPS 和 SmCPS 标识为靶向代谢工程途径中潜在的关键酶,以增加丹参酮在iS中的积累。毛状根。这是第一份全面整合丹参酮在S中的转录物和代谢物生物合成的报告。根状毛状体。数字对象标识符http://dx.doi.org/10.1007/s11738-012-0940-z

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