Methyl jasmonate regulation of pectin polysaccharides in Cosmos bipinnatus roots: A mechanistic insight into alleviating cadmium toxicity

Environ Pollut. 2024 Mar 15:345:123503. doi: 10.1016/j.envpol.2024.123503. Epub 2024 Feb 6.

Abstract

Methyl jasmonate (MeJA), a crucial phytohormone, which plays an important role in resistance to Cadmium (Cd) stress. The cell wall (CW) of root system is the main location of Cd and plays a key role in resistance to Cd toxicity. However, the mechanism effect of MeJA on the CW composition and Cd accumulation remain unclear. In this study, the contribution of MeJA in regulating CW structure, pectin composition and Cd accumulation was investigated in Cosmos bipinnatus. Phenotypic results affirm MeJA's significant role in reducing Cd-induced toxicity in C. bipinnatus. Notably, MeJA exerts a dual impact, reducing Cd uptake in roots while increasing Cd accumulation in the CW, particularly bound to pectin. The molecular structure of pectin, mainly uronic acid (UA), correlates positively with Cd content, consistent in HC1 and cellulose, emphasizing UA as pivotal for Cd binding. Furthermore, MeJA modulates pectin methylesterase (PME) activity under Cd stress, influencing pectin's molecular structure and homogalacturonan (HG) content affecting Cd-binding capacity. Chelate-soluble pectin (CSP) within soluble pectins accumulates a substantial Cd proportion, with MeJA regulating both UA content and the minor component 3-deoxy-oct-2-ulosonic acid (Kdo) in CSP. The study delves into the intricate regulation of pectin monosaccharide composition under Cd stress, revealing insights into the CW's physical defense and Cd binding. In summary, this research provides novel insights into MeJA-specific mechanisms alleviating Cd toxicity in C. bipinnatus, shedding light on complex interactions between MeJA, and Cd accumulation in CW pectin polysaccharide.

Keywords: Chelate-soluble pectin; Hemicellulose; Kdo; Monosaccharides; Phytoremediation; Uronic acid.

MeSH terms

  • Acetates*
  • Asteraceae* / metabolism
  • Cadmium* / metabolism
  • Cell Wall / metabolism
  • Cyclopentanes*
  • Oxylipins*
  • Pectins / chemistry
  • Plant Roots / metabolism
  • Polysaccharides / metabolism
  • Polysaccharides / pharmacology

Substances

  • Cadmium
  • methyl jasmonate
  • Polysaccharides
  • Pectins
  • Acetates
  • Cyclopentanes
  • Oxylipins