Abstract
In this work, the effects of elicitor concentration and elicitation day on the growth and asiaticoside production of centella cells were investigated. The results showed that 2-hydroxybenzoic acid from 50–200 μM and yeast extract from 2–5 g L−1 had different eliciting influences. The addition of 2-hydroxybenzoic acid and yeast extract to the cultures strongly enhanced asiaticoside production in centella cells. The increase in asiaticoside content induced by the addition of 100 μM of 2-hydroxybenzoic acid and 4 g L−1 of yeast extract at day 10 of inoculation was about 5- and 3.5-fold, respectively, as compared with that of the reference cells. In general, 2-hydroxybenzoic acid (abiotic elicitor) was more effective in enhancing asiaticoside biosynthesis than yeast extract (biotic elicitor).
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© 2012 Institute of Chemistry, Slovak Academy of Sciences
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Artikel in diesem Heft
- Determination of sulphur species in solidified cryolite melts
- Separation of alicyclic and aromatic hydrocarbons on a PLOT column coated with 3-benzylketoiminepropyl group
- Analysis and improvement of stability of pepsin-solubilized collagen from skin of carp (Cyprinus carpio)
- Effects of elicitors on the enhancement of asiaticoside biosynthesis in cell cultures of centella (Centella asiatica L. Urban)
- Increase of biogas production from pretreated hay and leaves using wood-rotting fungi
- Neural network model predictive control of a styrene polymerization plant: online testing using an electronic worksheet
- Influence of purine on copper behavior in neutral and alkaline sulfate solutions
- A parametric study on coal gasification for the production of syngas
- Tungstate sulfuric acid: preparation, characterization, and application in catalytic synthesis of novel benzimidazoles
- Synthesis of conjugated (E,E)-1,3-diene-containing troponoid-based compounds
- Reaction of aniline with ammonium persulphate and concentrated hydrochloric acid: Experimental and DFT studies
- Erratum to: “Zakaria Salmi, Sarra Gam-Derouich, Samia Mahouche-Chergui, Mireille Turmine, Mohamed M. Chehimi: On the interfacial chemistry of aryl diazonium compounds in polymer science”