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Effects of cerous nitrate on growth and tanshinone production in salvia miltiorrhiza hairy roots

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【作者】 韩名宇郭万里梁宗锁杨东风闫希军朱永宏刘岩

【Author】 HAN Mingyu;GUO Wanli;LIANG Zongsuo;YANG Dongfeng;YAN Xijun;ZHU Yonghong;LIU Yan;College of Life Science, Zhejiang Sci-Tech University;Key Laboratory of Plant Secondary Metabolism and Regulation of Zhejiang Province;Tasly R&D Institute, Tasly Holding Group Co., Ltd.;

【机构】 College of Life Science, Zhejiang Sci-Tech UniversityKey Laboratory of Plant Secondary Metabolism and Regulation of Zhejiang ProvinceTasly R&D Institute, Tasly Holding Group Co., Ltd.

【摘要】 Salvia miltiorrhiza, a popular traditional Chinese medicine, is widely used for treatments in cardiotonic disease. Tanshinones are a group of bioactive ingredients in S. miltiorrhiza. In this study, Ce3+ was used as an elicitor to enhance tanshinones production in S. miltiorrhiza hairy roots. The results showed that contents of dihydrotanshinone I(DTI) and cryptotanshinone(CT) were significantly enhanced by 50 μmol/L Ce3+, and reached to 0.875 mg/g and 0.271 mg/g, respectively. However, tanshinone II A(TIIA) and tanshinone I(TI) contents were significantly decreased to 59% and 62% of the control. Simultaneously, expressions of genes(HMGR, DXR, DXS1, DXS2 and GGPPS) involved in tanshinone biosynthesis were upregulated by Ce3+. Responses of DXS1, DXS2 and GGPPS to Ce3+ treatments were later than HMGR and DXR. We speculated that branch pathways of DTI and CT biosynthesis were probably different from TIIA and TI. This work will help us understand biosynthetic mechanism of tanshinones in plants.

【Abstract】 Salvia miltiorrhiza, a popular traditional Chinese medicine, is widely used for treatments in cardiotonic disease. Tanshinones are a group of bioactive ingredients in S. miltiorrhiza. In this study, Ce3+ was used as an elicitor to enhance tanshinones production in S. miltiorrhiza hairy roots. The results showed that contents of dihydrotanshinone I(DTI) and cryptotanshinone(CT) were significantly enhanced by 50 μmol/L Ce3+, and reached to 0.875 mg/g and 0.271 mg/g, respectively. However, tanshinone II A(TIIA) and tanshinone I(TI) contents were significantly decreased to 59% and 62% of the control. Simultaneously, expressions of genes(HMGR, DXR, DXS1, DXS2 and GGPPS) involved in tanshinone biosynthesis were upregulated by Ce3+. Responses of DXS1, DXS2 and GGPPS to Ce3+ treatments were later than HMGR and DXR. We speculated that branch pathways of DTI and CT biosynthesis were probably different from TIIA and TI. This work will help us understand biosynthetic mechanism of tanshinones in plants.

【基金】 supported by National Natural Science Foundation of China(81373908,81403033);Public Project of Technological Application in Zhejiang Province(2014C32108);China Postdoctoral Science Foundation Funded Project(2014M551771);Zhejiang Provincial Top Key Discipline of Biology
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2015年11期
  • 【分类号】TQ461
  • 【被引频次】5
  • 【下载频次】76
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