Trichoderma species mediated differential tolerance against biotic stress of phytopathogens in Cicer arietinum L

J Basic Microbiol. 2015 Feb;55(2):195-206. doi: 10.1002/jobm.201400317. Epub 2014 Sep 10.

Abstract

Trichoderma spp. have been reported to aid in imparting biotic as well as abiotic tolerance to plants. However, there are only few reports unfolding the differential ability of separate species of Trichoderma genera generally exploited for their biocontrol potential in this framework. A study was undertaken to evaluate the biocontrol potential of different Trichoderma species namely T. harzianum, T. asperellum, T. koningiopsis, T. longibrachiatum, and T. aureoviride as identified in the group of indigenous isolates from the agricultural soils of Eastern Uttar Pradesh, India. Their biocontrol potential against three major soilborne phytopathogens, i.e., Sclerotium rolfsii, Sclerotinia sclerotiorum, and Colletotrichum capsici was confirmed by dual culture plate technique. Efficient mycoparasitic ability was further assessed in all the isolates in relation to chitinase, β-1,3 glucanase, pectinase, lipase, amylase, and cellulase production while equally consistent results were obtained for their probable phosphate solubilization and indole acetic acid (IAA) production abilities. The selected isolates were further subjected to test their ability to promote plant growth, to reduce disease incidence and to tolerate biotic stress in terms of lignification pattern against S. rolfsii in chickpea plants. Among the identified Trichoderma species, excellent results were observed for T. harzianum and T. koningiopsis indicating better biocontrol potential of these species in the group and thus exhibiting perspective for their commercial exploitation.

Keywords: Abiotic stress; Antagonism; Biocontrol; Lignification; Trichoderma.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amylases / metabolism
  • Antibiosis*
  • Ascomycota / pathogenicity
  • Ascomycota / physiology*
  • Basidiomycota / pathogenicity
  • Basidiomycota / physiology*
  • Cellulase / metabolism
  • Chitinases / biosynthesis
  • Chitinases / pharmacology
  • Cicer / growth & development*
  • Cicer / microbiology*
  • Colletotrichum / pathogenicity
  • Colletotrichum / physiology
  • Glucan 1,3-beta-Glucosidase / biosynthesis
  • Glucan 1,3-beta-Glucosidase / pharmacology
  • India
  • Indoleacetic Acids / metabolism
  • Lignin / metabolism
  • Lipase / metabolism
  • Pest Control, Biological*
  • Phylogeny
  • Plants / metabolism
  • Plants / microbiology
  • Plants / ultrastructure
  • Polygalacturonase / metabolism
  • Soil Microbiology
  • Trichoderma / classification
  • Trichoderma / genetics
  • Trichoderma / isolation & purification
  • Trichoderma / physiology*

Substances

  • Indoleacetic Acids
  • indoleacetic acid
  • Lignin
  • Lipase
  • Amylases
  • Chitinases
  • Polygalacturonase
  • Cellulase
  • Glucan 1,3-beta-Glucosidase