Enhancement of adaptive response in peanut hairy root by exogenous signalling molecules under cadmium stress

J Plant Physiol. 2020 Nov:254:153278. doi: 10.1016/j.jplph.2020.153278. Epub 2020 Sep 17.

Abstract

Plants counteract Cd toxicity by activating cellular stress responses. The simultaneous exogenous application of methyl jasmonate (MeJA) and methyl-β-cyclodextrin (CD) before Cd exposure improved the response of Arachis hypogaea hairy root culture to the unfavourable effects of Cd toxicity. At 24 h after elicitation, genes that encode key enzymes in the phenylpropanoid biosynthesis pathway (i.e., PAL and RS3) were up-regulated to 3.2- and 5.4-fold changes respectively, thereby inducing stilbene production. The up-regulation of genes that encode transcription factors (i.e., ERF1 and ERF6) significantly increased the expression of several genes (PR4A, PR5, PR10, and chitinase) that encode the pathogenesis-related (PR) proteins to 25.8-, 45-, 5- and 12.6-fold changes, respectively. The more dramatic up-regulation of PR protein-encoding genes demonstrated the significant role of defence proteins in plant protective mechanisms. The prolonged (i.e., 72-h) treatment with MeJA + CD_Cd triggered adaptive responses by substantially increasing the levels of antioxidants, stilbenes, and other phenolic substances. These findings suggest that the interaction between signalling elicitors (MeJA and CD) and Cd modulates a complex signalling network for plant defence system.

Keywords: Arachis hypogaea; Cadmium; Defence response; Hairy root; Signalling molecule; Stilbene.

MeSH terms

  • Acetates / pharmacology
  • Adaptation, Physiological / drug effects*
  • Arachis / drug effects
  • Arachis / metabolism*
  • Arachis / physiology
  • Cadmium / adverse effects*
  • Chromatography, Liquid
  • Cyclopentanes / pharmacology
  • Oxylipins / pharmacology
  • Plant Roots / drug effects
  • Plant Roots / metabolism*
  • Plant Roots / physiology
  • Real-Time Polymerase Chain Reaction
  • Signal Transduction / drug effects
  • Stilbenes / metabolism
  • Stress, Physiological
  • Tandem Mass Spectrometry
  • Transcriptome / drug effects
  • Transcriptome / physiology

Substances

  • Acetates
  • Cyclopentanes
  • Oxylipins
  • Stilbenes
  • Cadmium
  • methyl jasmonate