Role of the polycarboxylic compounds in the response of Silene vulgaris to chromium

Environ Sci Pollut Res Int. 2017 Feb;24(6):5746-5756. doi: 10.1007/s11356-016-8218-4. Epub 2017 Jan 3.

Abstract

This work aims to investigate the nature and the specific mechanisms by which polycarboxylic compounds participate in the tolerance of Silene vulgaris to Cr with special attention given to the rhizosphere system. This knowledge is important to use this species in the implementation of phytoremediation technologies in Cr-polluted soils. According to the results, chromium is chelated and mobilized by the citric and malic acids in plant tissues, while oxalic acid might participate in the reduction and chelation of Cr in the rhizosphere. At the applied doses, the response of both exudation rate and root exudate composition (total polyphenols and quercitin) seems to involve a rearrangement in the lignification of the plant cell wall to immobilize Cr. Quercetin-3-dirhamnosyl-galactoside and apiin (apigenin-7-O-apiosyl-glucoside) have been identified as the major polyphenols in the root exudates of S. vulgaris. The increments found in the apiin concentration in root exudates seem to be related to the protection against Cr toxicity by chelation of Cr or by free radical scavenging. Though earlier response is detected in plant tissues, results from this work together with previous studies in S. vulgaris indicate that exudation might be a regulated mechanism of protection under Cr exposition in S. vulgaris that may involve mainly Cr reduction and chelation.

Keywords: Chromium speciation; Exudation; Metal tolerance; Organic acids; Polyphenols; Silene vulgaris.

MeSH terms

  • Biodegradation, Environmental*
  • Chromium*
  • Citric Acid
  • Malates
  • Oxalic Acid
  • Plant Roots
  • Silene*

Substances

  • Malates
  • Chromium
  • Citric Acid
  • malic acid
  • Oxalic Acid