Ebel J. Phytoalexin synthesis:the biochemical analysis of the induction process[J]. Ann Rev Phytopathol, 1986, 24:235.
[4]
Song J Y, Zhang Y L, Qi J J, et al . Selection of a high tanshione production crown gall strain and production of tanshinone in the strain [J]. Chin J Biotechnol, 1997, 13 (3) :317.
Yan Q, Shi M, Janet N, et al. Elicitor-induced rosmarinic acid accumulation and secondary metabolism enzyme activities in Salvia miltiorrhiza hairy roots[J]. Plant Sci, 2006, 170:853.
[7]
Zhang Y L, Song J Y, Lu G L, et al. Establishment of Salvia miltiorrhiza hairy root culture and tanshinone production[J]. China J Chin Mater Med, 1995, 20 (5) :269.
[8]
Shi M, Kwok K W, Wu J Y. Enhancement of tanshinone production in Salvia miltiorrhiza Bunge (red or Chinese sage) hairy-root culture by hyperosmotic stress and yeast elicitor[J]. Biotech Bio, 2007, 46:191.
Song J Y, Qi J J, Lei H T, et al. Effects of Armillaria mellea elictor on accumulation of transhinones in crown gall cultures of Salvia miltiorrhiza[J]. Acta Bot Sin, 2000, 42 (3) :316.
[11]
Jiang L Z, Li G Z, Jian Y W. Promotion of Salvia miltiorrhiza hairy root growth and tanshinone production by polysaccharide-protein fractions of plant growth-promoting rhizobacterium Bacillus cereus[J]. Process Bio, 2010, 45 (9) :1517.
[12]
Parchmann S, Gundlach H, Mueller M J. Induction of 12-oxo-phytodienoic acid in wounded plants and elicited plant cell cultures[J]. Plant Physl, 1997, 115(3):1057.
[13]
Bohland C, Balkenhohl T, Loers G, et al, Differential induction of lipoxyfenase isoforms in wheat upon treatment with rust fungus elicitor, chitin oligosaccharides, chitosan and methyl jasmonate[J]. Plant Physl, 1997, 114(2):679.
Dong J, Wan G W, Liang Z S. Accumulation of salicylic acid-induced phenolic compounds and raised activities of secondary metabolic and antioxidative enzymes in Salvia miltiorrhiza cell culture[J]. J Biotech, 2010, 148:99.
[18]
Popp M P, Lesney M S, Davis J M. Defense responses elicited in plant cell suspension culture[J]. Pl Cell Tis, 1997, 47:199.
[19]
Jiang L Z, Li G Z, Jian Y W. Effects of biotic and abiotic elicitors on cell growth and tanshinone accumulation in Salvia miltiorrhiza cell cultures[J]. Appl Microbiol Biotechnol,2010, 87:137.
Gao W, Hillwig M L, Huang L Q, et al. A functional genomics approach to tanshinone biosynthesis provides stereochemical insights[J]. Org Lett, 2009, 11:5170.
[24]
Iijima Y, Davidovich-Rikanati R, Fridman E, et al. The biochemical and molecular basis for the divergent patterns in the biosynthesis of terpenes and phenylpropenes in the peltate glands of three cultivars of Basil[J]. Plant Physl, 2004, 136: 3724.
[25]
Ge X C, Wu J Y. Tanshinone production and isoprenoid pathways in Salvia miltiorrhiza hairy roots induced by Ag+ and yeast elicitor[J]. Plant Sci, 2005, 168 :487.
[26]
Ellis B E, Towers G H. The biosynthesis of rosmarinic acid[J]. Biochem J, 1970, 118:291.
[27]
Petersen M, Hausler E, Karwatzki B, et al. Proposed biosynthetic pathway for rosmarinic acid in cell cultures of Coleus blumei Benth[J]. Planta, 1993, 189:10.
[28]
Petersen M, Hausler E, Meinhard J, et al. The biosynthesis of rosmarinic acid in suspension cultures of Coleus blumei [J]. Plant Cell Tiss Org Cult, 1994, 38:171.
[29]
Song J, Wang Z Z. Molecular cloning, expression and characterization of a phenylalanine ammonia-lyase gene(SmPAL1)from Salvia miltiorrhiza[J]. Mol Biol Rep, 2009, 36:939.
[30]
Huang B, Duan Y, Yi B, et al. Characterization and expression profiling of cinnamate 4-hydroxylase gene from Salvia miltiorrhiza in rosmarinic acid biosynthesis pathway[J]. Russ J, 2008, 55 (3) :390.
[31]
易博. 丹参迷迭香酸代谢酪氨酸支路重要基因克隆及调控分析 . 上海:第二军医大学, 2007.
[32]
中国药典. 一部[S]. 2010:70.
[33]
Jing Y H, Jing Y F, Horie Y, et al. Ameliorating effects of compounds derived from Salvia miltiorrhiza root extract on microcirculatory disturbance and target organ injury by ischemia and reperfusion [J]. Pharm Thera, 2008, 117 (2) :280.
Cruickshan I A M, Perrin D R. The isolation and partial characterization of monilicolin A, a polypeptide with phaseollim-inducing activity from Monilinia fructicola[J]. Life Sci, 1968, 7:449.
Xiao Y, Di P, Chen J F, et al. Characterization and expression profiling of 4-hydroxyphenylpyruvate dioxygenase gene (Smhppd) from Salvia miltiorrhiza hairy root cultures[J]. Mol Biol Rep, 2009, 36:2019.
[45]
Huang B B, Yi B, Duan Y B, et al. Characterization and expression profiling of tyrosine aminotransferase gene from Salvia miltiorrhiza (Dan-shen) in rosmarinic acid biosynthesis pathway[J]. Mol Biol Rep, 2008, 35:601.
[46]
Qiong Y, Shi M, Janet N, et al. Elicitor-induced rosmarinic acid accumulation and secondary metabolism enzyme activities in Salvia miltiorrhiza hairy roots[J]. Plant Sci, 2006, 170: 853.
Tanaka T, Morimoto S, Nonaka G, et al. Magnesium and ammonium-potassium lithospermates B, the active principles having a uremiapreventive effect from Salvia miltiorrhiza[J]. Chem Pharm Bull, 1989, 37:340.
[51]
Wu S J, Shi M, Wu J Y. Cloning and characterization of the 1-deoxy-D-xylulose 5-phosphate reductoisomerase gene for diterpenoid tanshinone biosynthesis in Salvia miltiorrhiza(Chinese sage) hairy roots[J]. Biotechnol Appl Biochem, 2009, 52:89.