Genotypic variation in the response of chickpea to arbuscular mycorrhizal fungi and non-mycorrhizal fungal endophytes

Can J Microbiol. 2018 Apr;64(4):265-275. doi: 10.1139/cjm-2017-0521. Epub 2018 Feb 1.

Abstract

Plant roots host symbiotic arbuscular mycorrhizal (AM) fungi and other fungal endophytes that can impact plant growth and health. The impact of microbial interactions in roots may depend on the genetic properties of the host plant and its interactions with root-associated fungi. We conducted a controlled condition experiment to investigate the effect of several chickpea (Cicer arietinum L.) genotypes on the efficiency of the symbiosis with AM fungi and non-AM fungal endophytes. Whereas the AM symbiosis increased the biomass of most of the chickpea cultivars, inoculation with non-AM fungal endophytes had a neutral effect. The chickpea cultivars responded differently to co-inoculation with AM fungi and non-AM fungal endophytes. Co-inoculation had additive effects on the biomass of some cultivars (CDC Corrine, CDC Anna, and CDC Cory), but non-AM fungal endophytes reduced the positive effect of AM fungi on Amit and CDC Vanguard. This study demonstrated that the response of plant genotypes to an AM symbiosis can be modified by the simultaneous colonization of the roots by non-AM fungal endophytes. Intraspecific variations in the response of chickpea to AM fungi and non-AM fungal endophytes indicate that the selection of suitable genotypes may improve the ability of crop plants to take advantage of soil ecosystem services.

Keywords: Cicer arietinum L.; amélioration des plantes; champignons du sol; génotype végétal; plant breeding; plant genotype; soil fungi; symbiose; symbiosis.

MeSH terms

  • Biomass
  • Cicer / genetics*
  • Cicer / microbiology*
  • Ecosystem
  • Endophytes / physiology*
  • Fungi / growth & development
  • Genetic Variation / physiology*
  • Genotype
  • Mycorrhizae / physiology*
  • Plant Development
  • Plant Roots / microbiology
  • Soil
  • Symbiosis

Substances

  • Soil