Salvia miltiorrhiza contains two groups of biologically active secondary metabolites termed phenolic compounds (e.g. rosmarinic acid) and tanshinones (e.g. cryptotanshinone). Their roles in plant defense responses were examined using a simplified system consisting of a yeast elicitor and a Ti C58 transformed S. miltiorrhiza cell line. Both dosage and time course studies were carried out on the effects of yeast elicitor on the formation of rosmarinic acid and cryptotanshinone. It was found that the yeast elicitor reduced the constituent level of rosmarinic acid (from ca. 5% to ca. 3.0% of dry cell weight) whereas the level of cryptotanshinone was enhanced greatly (from a negligible amount to ca. 20 mg/l). These results suggest that in S. mil...
Salvia miltiorrhiza has been widely used in the treatment of coronary heart disease. Tanshinones, a ...
Salvia miltiorrhiza is known for tanshinones and salvianolic acids, which have been shown to have a ...
Secondary metabolites from plants play key roles in human medicine and chemical industries. Due to l...
The effects of yeast elicitor on the cell growth and secondary metabolism of a high-tanshinone-produ...
Hairy root cultures of Salvia miltiorrhiza transformed with Agrobacterium rhizogenes ATCC 15834 prod...
This work examined the accumulation of diterpenoid tanshinones and related secondary metabolism path...
Tanshinones are abietane-type norditerpenoid quinone natural products found in a well-known traditio...
Tanshinones are abietane-type norditerpenoid quinone natural products found in a well-known traditio...
Methyl viologen (MV) (20-150 μM), a generator of superoxide anion (O2/-), but not hydrogen peroxide ...
Ag+ was employed as an abiotic elicitor to stimulate the secondary metabolite production in hairy ro...
Phenolic acids and tanshinones are two groups of bioactive ingredients in Salvia miltiorrhiza Bunge...
Phenolic acids and tanshinones are two groups of bioactive ingredients in Salvia miltiorrhiza Bunge...
Hyperosmotic stress (OS, created with 50 g/L sorbitol) and a yeast elicitor (YE, polysaccharide frac...
This study aimed to improve rosmarinic acid (RA) production in the whole plant culture of Solenostem...
Effect of N-6-benzyladenine (BA) on tanshinone formation in callus cultures of Salvia miltiorrhiza w...
Salvia miltiorrhiza has been widely used in the treatment of coronary heart disease. Tanshinones, a ...
Salvia miltiorrhiza is known for tanshinones and salvianolic acids, which have been shown to have a ...
Secondary metabolites from plants play key roles in human medicine and chemical industries. Due to l...
The effects of yeast elicitor on the cell growth and secondary metabolism of a high-tanshinone-produ...
Hairy root cultures of Salvia miltiorrhiza transformed with Agrobacterium rhizogenes ATCC 15834 prod...
This work examined the accumulation of diterpenoid tanshinones and related secondary metabolism path...
Tanshinones are abietane-type norditerpenoid quinone natural products found in a well-known traditio...
Tanshinones are abietane-type norditerpenoid quinone natural products found in a well-known traditio...
Methyl viologen (MV) (20-150 μM), a generator of superoxide anion (O2/-), but not hydrogen peroxide ...
Ag+ was employed as an abiotic elicitor to stimulate the secondary metabolite production in hairy ro...
Phenolic acids and tanshinones are two groups of bioactive ingredients in Salvia miltiorrhiza Bunge...
Phenolic acids and tanshinones are two groups of bioactive ingredients in Salvia miltiorrhiza Bunge...
Hyperosmotic stress (OS, created with 50 g/L sorbitol) and a yeast elicitor (YE, polysaccharide frac...
This study aimed to improve rosmarinic acid (RA) production in the whole plant culture of Solenostem...
Effect of N-6-benzyladenine (BA) on tanshinone formation in callus cultures of Salvia miltiorrhiza w...
Salvia miltiorrhiza has been widely used in the treatment of coronary heart disease. Tanshinones, a ...
Salvia miltiorrhiza is known for tanshinones and salvianolic acids, which have been shown to have a ...
Secondary metabolites from plants play key roles in human medicine and chemical industries. Due to l...