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首页> 外文期刊>Molecules >Ag+ as a More Effective Elicitor for Production of Tanshinones than Phenolic Acids in Salvia miltiorrhiza Hairy Roots
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Ag+ as a More Effective Elicitor for Production of Tanshinones than Phenolic Acids in Salvia miltiorrhiza Hairy Roots

机译:Ag +是丹参毛状根中比酚酸更有效的丹参酮生产促进剂

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Phenolic acids and tanshinones are two groups of bioactive ingredients in Salvia miltiorrhiza Bunge. As a heavy metal elicitor, it has been reported that Ag+ can induce accumulations of both phenolic acids and tanshinones in S. miltiorrhiza hairy roots. In this study, the effects of Ag+ treatment on accumulations of six phenolic acids and four tanshinones in S. miltiorrhiza hairy roots were investigated. To further elucidate the molecular mechanism, expressions of key genes involved in the biosynthesis of these ingredients were also detected. The results showed that although the total phenolic acids content was almost not affected by Ag+, accumulations of rosmarinic acid (RA), caffeic acid and ferulic acid were significantly increased, while accumulations of salvianolic acid B (LAB), danshensu (DSU) and cinnamic acid were decreased. We speculate that LAB probably derived from the branch pathway of DSU biosynthesis. Contents of four tanshinones were enhanced by Ag+ and their accumulations were more sensitive to Ag+ than phenolic acids. Genes in the upstream biosynthetic pathways of these ingredients responded to Ag+ earlier than those in the downstream biosynthetic pathways. Ag+ probably induced the whole pathways, upregulated gene expressions from the upstream pathways to the downstream pathways, and finally resulted in the enhancement of ingredient production. Compared with phenolic acids, tanshinone production was more sensitive to Ag+ treatments. This study will help us understand how secondary metabolism in S. miltiorrhiza responds to elicitors and provide a reference for the improvement of the production of targeted compounds in the near future. View Full-Text
机译:丹参中的酚类和丹参酮是两种生物活性成分。作为重金属引发剂,据报道,Ag +可以诱导丹参毛状根中酚酸和丹参酮的积累。在这项研究中,研究了Ag +处理对丹参毛状根中6种酚酸和4种tanshinones积累的影响。为了进一步阐明分子机制,还检测了参与这些成分生物合成的关键基因的表达。结果表明,尽管总酚酸含量几乎不受Ag +的影响,但迷迭香酸(RA),咖啡酸和阿魏酸的积累量显着增加,而丹酚酸B(LAB),丹参素(DSU)和肉桂酸的积累量酸减少。我们推测LAB可能源自DSU生物合成的分支途径。 Ag +可以提高4种丹参酮的含量,并且它们的积累比酚酸对Ag +更为敏感。这些成分的上游生物合成途径中的基因比下游生物合成途径中的基因更早地响应Ag +。 Ag +可能诱导了整个途径,从上游途径到下游途径的基因表达上调,最终导致了成分生产的增加。与酚酸相比,丹参酮的生成对Ag +处理更为敏感。这项研究将帮助我们了解沙门氏菌的次级代谢如何响应激发子,并为在不久的将来改善目标化合物的生产提供参考。查看全文

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