Response of Bioactive Metabolite and Biosynthesis Related Genes to Methyl Jasmonate Elicitation in Codonopsis pilosula

Molecules. 2019 Feb 1;24(3):533. doi: 10.3390/molecules24030533.

Abstract

Bioactive metabolites in Codonopsis pilosula are of particular interest as an immunostimulant. Methyl jasmonate (MeJA) plays an important role in the elicitation of metabolite biosynthesis. Here, we explored the response of metabolites to MeJA elicitation in C. pilosula adventitious roots and multiple shoots. The results showed that the biomass, polysaccharide, and lobetyolin content of adventitious roots exhibited the highest increases with 100 µmol·L-1 MeJA at the 16th day of subculture, whereas the atractylenolide III (a terpenoid) content increased extremely with 50 µmol·L-1 MeJA treatment at the 7th day of subculture. In addition, the biomass and lobetyolin content significantly increased at the 4th day after treatment. Similarly, the polysaccharide and lobetyolin content increased in multiple shoots. Further identification of different metabolites responding to MeJA by ¹H-NMR showed an extremely significant increase of the lobetyolinin level, which coincided with lobetyolin. Accordingly, the precursor, fatty acids, showed a highly significant decrease in their levels. Furthermore, a significant increase in β-d-fructose-butanol glycoside was detected, which was accompanied by a decrease in the sucrose level. Accordingly, the enzyme genes responsible for terpenoid and carbohydrate biosynthesis, CpUGPase, and CpPMK, were up regulated. In conclusion, MeJA promoted culture growth and accelerated bioactive metabolite accumulation by regulating the expression of the metabolite biosynthesis related genes, CpUGPase and CpPMK in C. pilosula.

Keywords: 1H-NMR; Codonopsis pilosula; MeJA; gene expression; metabolite.

MeSH terms

  • Acetates / pharmacology*
  • Biomass
  • Codonopsis / drug effects*
  • Codonopsis / genetics
  • Codonopsis / growth & development
  • Codonopsis / metabolism
  • Cyclopentanes / pharmacology*
  • Fatty Acids / biosynthesis
  • Gene Expression Regulation, Plant*
  • Lactones / metabolism
  • Metabolic Networks and Pathways / drug effects
  • Metabolic Networks and Pathways / genetics
  • Oxylipins / pharmacology*
  • Phosphotransferases (Phosphate Group Acceptor) / genetics
  • Phosphotransferases (Phosphate Group Acceptor) / metabolism
  • Plant Growth Regulators / pharmacology*
  • Plant Proteins / genetics*
  • Plant Proteins / metabolism
  • Plant Roots / drug effects
  • Plant Roots / genetics
  • Plant Roots / growth & development
  • Plant Roots / metabolism
  • Plant Shoots / drug effects
  • Plant Shoots / genetics
  • Plant Shoots / growth & development
  • Plant Shoots / metabolism
  • Polyynes / metabolism
  • Sesquiterpenes / metabolism
  • UTP-Glucose-1-Phosphate Uridylyltransferase / genetics
  • UTP-Glucose-1-Phosphate Uridylyltransferase / metabolism

Substances

  • Acetates
  • Cyclopentanes
  • Fatty Acids
  • Lactones
  • Oxylipins
  • Plant Growth Regulators
  • Plant Proteins
  • Sesquiterpenes
  • atractylenolide III
  • lobetyolin
  • Polyynes
  • methyl jasmonate
  • Phosphotransferases (Phosphate Group Acceptor)
  • phosphomevalonate kinase
  • UTP-Glucose-1-Phosphate Uridylyltransferase