ZHANG Yan, LI Xiao-ming, REN Zhen-li, et al. Effects of Lime on Seedling Growth,Biomass and Active Ingredients of [J]. Chinese journal of experimental traditional medical formulae, 2015, 21(7): 75-79.
DOI:
ZHANG Yan, LI Xiao-ming, REN Zhen-li, et al. Effects of Lime on Seedling Growth,Biomass and Active Ingredients of [J]. Chinese journal of experimental traditional medical formulae, 2015, 21(7): 75-79. DOI: 10.13422/j.cnki.syfjx.2015070075.
Effects of Lime on Seedling Growth,Biomass and Active Ingredients of
Objective: To investigate effects of different amounts of lime on yield and quality of Salvia miltiorrhiza
and provid a reference for cultivation and autotoxicity ease of this herb. Method: With growth targets
yield and contents of seven kinds of active ingredients (salvianolic acid B
tanshinol
rosemary acid
tanshinone ⅡA
tanshinone Ⅰ
cryptotanshinone
dihydrotanshinone) as indexes
effects of different gradients of lime on growth and active ingredients of S. miltiorrhiza.HPLC was employed to determined the content of these seven components with mobile phase of acetonitrile-0.1% phosphoric acid water for gradient elution and detection wavelength at 280 nm. Result: Effects of adding lime on growth and biomass of S. miltiorrhiza did not reach significant levels.But with addition of lime
salvianolic acids substances and tanshinones substances presented a significant negative correlation trending
salvianolic acids first increased
then decreased;while tanshinones decreased first
further increased.Salvianolic acids increased significantly and tanshinones reduced significantly when added 60 g·m-2 of lime in continuous cropping soil or added 45 g·m-2 of lime in the new soil.But the amount of lime added up to 75 g·m-2
there were no significantly difference in these two types of components with the control group. Conclusion: Effects of adding lime on growth and biomass of S. miltiorrhiza do not reach significant levels;but with addition of lime
salvianolic acids and tanshinones presents competitive trend
this may be related to regulation of pH to key enzymes of secondary metabolites biosynthesis pathway.