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组合诱导子对丹参毛状根培养中丹参酮代谢谱和 SmCPS 表达的影响。

Effects of combined elicitors on tanshinone metabolic profiling and SmCPS expression in Salvia miltiorrhiza hairy root cultures.

机构信息

School of Traditional Chinese Medicine, Capital Medical University, Beijing 100069, China.

出版信息

Molecules. 2013 Jun 27;18(7):7473-85. doi: 10.3390/molecules18077473.

Abstract

Tanshinones are abietane-type norditerpenoid quinone natural products found in a well-known traditional Chinese medicinal herb, Salvia miltiorrhiza Bunge. The copalyl diphosphate synthase of S. miltiorrhiza (SmCPS) is the key enzyme in the first step for transformation of geranylgeranyl diphosphate (GGPP) into miltiradiene, which has recently been identified as the precursor of tanshinones. Based on previous gene-to-metabolite network, this study examined the influences of various combined elicitors on the expression of SmCPS and production of tanshinones in S. miltiorrhiza hairy root cultures. Combined elicitors were composed of three classes of elicitors, a heavy metal ion (Ag⁺), a polysaccharide (yeast extract, YE), and a plant response-signalling compound (methyl jasmonate, MJ). YE + Ag⁺, Ag⁺ + MJ, YE + MJ, and YE + Ag⁺ + MJ were the combinations we tested. The effect of elicitors on the SmCPS expression level was detected by quantitative real-time PCR (qRT-PCR), and the tanshinones accumulation responses to elicitation were analysed by Ultra Performance Liquid Chromatography (UPLC) metabolite profiling. Of these combined elicitors, the expression of SmCPS was significantly enhanced by elicitation, especially at 24 h and 36 h. Of four tanshinones detected, the contents of cryptotanshinone and dihydrotanshinone I were enhanced by treatment with YE + Ag⁺, Ag⁺ + MJ, and YE + Ag⁺ + MJ. Our results indicate that appropriate combined elicitors can enhance tanshinones production in hairy root cultures.

摘要

丹参酮是一种枞烷型二萜醌类天然产物,存在于著名的传统中药丹参中。丹参的焦磷酸香叶酯合酶(SmCPS)是 GGPP 转化为丹参二烯的第一步中的关键酶,最近被鉴定为丹参酮的前体。基于之前的基因-代谢物网络,本研究考察了各种组合诱导剂对丹参毛状根培养物中 SmCPS 表达和丹参酮生产的影响。组合诱导剂由三类诱导剂组成,即重金属离子(Ag⁺)、多糖(酵母提取物,YE)和植物反应信号化合物(茉莉酸甲酯,MJ)。我们测试了 YE + Ag⁺、Ag⁺ + MJ、YE + MJ 和 YE + Ag⁺ + MJ 的组合。通过定量实时 PCR(qRT-PCR)检测诱导剂对 SmCPS 表达水平的影响,并通过超高效液相色谱(UPLC)代谢物分析检测丹参酮积累对诱导的响应。在这些组合诱导剂中,SmCPS 的表达在 24 小时和 36 小时尤其明显地被诱导增强。在所检测的四种丹参酮中,隐丹参酮和二氢丹参酮 I 的含量通过 YE + Ag⁺、Ag⁺ + MJ 和 YE + Ag⁺ + MJ 的处理而增强。我们的结果表明,适当的组合诱导剂可以增强毛状根培养物中丹参酮的生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eed2/6269745/9f5bcf1bedc4/molecules-18-07473-g001.jpg

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