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Effect of Levopimaradiene on Terpene Trilactones Biosynthesis and Gene Expression Profiling in Ginkgo biloba Cells

机译:Levopimaradiene对Ginkgo Biloba细胞萜烯三晶酮生物合成和基因表达分析的影响

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Ginkgolides (GKs) and Bilobalide (BB) are rare terpene trilactones obtained from Ginkgo biloba, but their biosynthetic pathway is still unclear. In this paper, effects of levopimaradiene (LP) on increasing the production of terpene trilactones of G. biloba dedifferentiated cells (DDCs) and cambial meristematic cells (CMCs) were reported. The productions of ginkgolide A (GA) and ginkgolide B (GB) were 1.61 and 1.32 folds larger than that of the control groups when G. biloba DDCs was treated with LP, and the productions of ginkgolide C (GC) and BB reached 234 and 161 mu g L-1 after treated with LP for 60 h. The production of GA, GB, GC and BB was 2.03, 1.43, 1.22 and 1.19 folds larger than that of the control groups in LP-treated CMCs groups. The results demonstrated that BB could be produced from the methylerythritol 4-phosphate (MEP) pathway. qRT-PCR experiments showed that LP was a significant precursor manipulated the biosynthesis of terpene trilactones via affecting the transcript levels of several related genes in the MEP pathway.
机译:Ginkgolides(GKS)和双硼丙酮(BB)是从银杏叶获得的稀有萜烯三甲酸酯,但它们的生物合成途径尚不清楚。本文报道了综述LevoPimaradieNe(LP)对增加G.Biloba Deffetentiated细胞(DDCS)和爪式共源细胞(CMC)的萜烯三嵌体的产生的影响。当用LP处理G.Biloba DDC时,GinkGolide A(Ga)和GinkGolide B(GB)的制作比对照组的1.61和1.32折叠,以及GinkGolide C(GC)和BB的制作达到234用LP处理60小时后161μgl-1。 GA,GB,GC和BB的产生为2.03,1.43,1.22和1.19倍,比LP处理的CMCS组中对照组大。结果表明,BB可以由甲基吡啶醇4-磷酸酯(MEP)途径产生。 QRT-PCR实验表明,LP是一种显着的前体,通过影响MEP途径中几种相关基因的转录物水平来操纵萜烯三嵌体的生物合成。

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