Root endophyte-enhanced peanut-rhizobia interaction is associated with regulation of root exudates

Microbiol Res. 2021 Sep:250:126765. doi: 10.1016/j.micres.2021.126765. Epub 2021 May 14.

Abstract

Root exudates play a crucial role in the symbiosis between leguminous plants and rhizobia. Our previous studies have shown that a fungal endophyte Phomopsis liquidambaris promotes peanut-rhizobia nodulation and nitrogen fixation, but the underlying mechanism are largely unknown. Here, we explore the role of peanut root exudates in Ph. liquidambaris-mediated nodulation enhancement. We first collected root exudates from Ph. liquidambaris-inoculated and un-inoculated peanuts and determined their effects on rhizobial growth, biofilm formation, chemotaxis, nodC gene expression, and peanut nodulation. Our results found a positive effect of Ph. liquidambaris-inoculated root exudates on these characteristics of rhizobia. Next, we compared the root exudates profile of Ph. liquidambaris-inoculated and un-inoculated plants and found that Ph. liquidambaris altered the concentrations of phenolic acids, flavonoids, organic acids and amino acids in root exudates. Furthermore, the rhizobial chemotaxis, growth and biofilm formation in response to the changed compounds at different concentrations showed that all of the test compounds induced rhizobial chemotactic behavior, and organic acids (citric acid and oxalic acid) and amino acid (glutamate, glycine and glutamine) at higher concentrations increased rhizobial growth and biofilm formation. Collectively, our results suggest that root exudates alterations contribute to Ph. liquidambaris-mediated peanut-rhizobia nodulation enhancement.

Keywords: Fungal endophyte; Peanut; Phomopsis liquidambaris; Rhizobium sp.; Root exudates; Symbiosis.

MeSH terms

  • Arachis / genetics
  • Arachis / microbiology*
  • Biofilms
  • Endophytes / genetics
  • Endophytes / metabolism*
  • Gene Expression Regulation*
  • Nitrogen Fixation
  • Plant Root Nodulation / genetics*
  • Plant Root Nodulation / physiology
  • Plant Roots / genetics
  • Plant Roots / microbiology*
  • Rhizobium / genetics
  • Rhizobium / growth & development
  • Rhizobium / metabolism*
  • Symbiosis