Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, China.
Mol Biol Rep. 2011 Apr;38(4):2471-8. doi: 10.1007/s11033-010-0383-9. Epub 2010 Nov 17.
Salvia miltiorrhiza is a valuable Chinese herb (Danshen) that is widely used in traditional Chinese medicine. Diterpene quinones, known as tanshinones, are the main bioactive components of S. miltiorrhiza; however, there is only limited information regarding the molecular mechanisms underlying secondary metabolism in this plant. We used cDNA microarray analysis to identify changes in the gene expression profile at different stages of hairy root development in S. miltiorrhiza. A total of 203 genes were singled out from 4,354 cDNA clones on the microarray, and 114 unique differentially expressed cDNA clones were identified: six genes differentially expressed in 45-day hairy root compared with 30-day hairy root; 96 genes differentially expressed in 60-day hairy root compared with 30-day hairy root; and 12 genes unstably expressed at different stages. Among the 96 genes differentially expressed in 60-day hairy root compared with 30-day hairy root, a total of 57 genes were up-regulated, and 26 genes represent 29 metabolism-related enzymes. Copalyl diphosphate synthase, which catalyzes the conversion of the universal diterpenoid precursor (E,E,E)-geranylgeranyl diphosphate to copalyl diphosphate, was up-regulated 6.63 fold, and another six genes involved in tanshinone biosynthesis and eight candidate P450 genes were also differentially expressed. These data provide new insights for further identification of the enzymes involved in tanshinone biosynthesis.
丹参是一种珍贵的中国草药(丹参),在传统中药中被广泛使用。二萜醌,被称为丹参酮,是丹参的主要生物活性成分;然而,关于这种植物次生代谢的分子机制只有有限的信息。我们使用 cDNA 微阵列分析来鉴定丹参毛状根不同发育阶段基因表达谱的变化。从微阵列上的 4354 个 cDNA 克隆中挑选出 203 个基因,鉴定出 114 个独特的差异表达 cDNA 克隆:与 30 天毛状根相比,在 45 天毛状根中有 6 个基因差异表达;与 30 天毛状根相比,在 60 天毛状根中有 96 个基因差异表达;12 个基因在不同阶段表达不稳定。在与 30 天毛状根相比,在 60 天毛状根中差异表达的 96 个基因中,共有 57 个基因上调,26 个基因代表 29 种代谢相关酶。焦磷酸香叶酯合酶,催化普遍二萜前体(E,E,E)-金合欢基二磷酸转化为焦磷酸香叶酯,上调了 6.63 倍,另外 6 个参与丹参酮生物合成的基因和 8 个候选 P450 基因也差异表达。这些数据为进一步鉴定丹参酮生物合成中涉及的酶提供了新的见解。