Co-expression of two genes, a chitinase (chit42) and proteinase (prb1), implicated in mycoparasitism by Trichoderma

Johanna M Steyaert1, Alison Stewart, Marlene V Jaspers

  • 1Bio-protection and Ecology Division, P.O. Box 84, Lincoln University, Canterbury, New Zealand.

Mycologia
|December 15, 2010
PubMed

Insights

Mycoparasitism genes in Trichoderma hamatum contain conserved regulatory motifs (MYRE1-MYRE4) that predict co-expression. These motifs are present in T. hamatum and T. atroviride, influencing gene responses to different carbon sources and pathogen confrontation.

Area of Science:

  • Mycology
  • Plant Pathology
  • Molecular Biology

Background:

  • Mycoparasitism by Trichoderma species involves secreted enzymes to degrade fungal pathogens.
  • Specific promoter motifs (MYRE1-MYRE4) in Trichoderma atroviride are linked to mycoparasitic response induction.
  • The presence and function of these motifs in other Trichoderma species remain largely unexplored.

Purpose of the Study:

  • To investigate the presence of MYRE1-MYRE4 motifs in Trichoderma hamatum promoter regions.
  • To determine if these motifs predict co-expression of mycoparasitism-related genes in T. hamatum.
  • To compare gene expression patterns between T. hamatum and T. harzianum under different conditions.

Main Methods:

  • Cloning and sequencing of T. hamatum homologues for ech42, prb1, and lam1.3 genes using PCR techniques.
  • Bioinformatic analysis of promoter regions to identify conserved motifs.
  • Substrate assays using glycerol and confrontation assays with Sclerotinia sclerotiorum to analyze gene expression.

Main Results:

  • Conserved MYRE1-MYRE4 motifs, plus a novel MYRE5 motif, were identified in the promoter regions of T. hamatum chit42 and prb1 genes.
  • Gene expression in response to glycerol was species-specific, with chit42 and prb1 not expressed in T. harzianum but showing varied expression in T. hamatum.
  • During confrontation with Sclerotinia sclerotiorum, T. hamatum chit42 and prb1 were co-expressed and induced, while xbg1.3-110 showed no expression.

Conclusions:

  • The MYRE1-MYRE4 and MYRE5 motifs are conserved in T. atroviride and T. hamatum.
  • The presence of these motifs can predict co-expression of specific mycoparasitism genes in response to different substrates.
  • Species-specific gene regulation mechanisms exist within Trichoderma, influencing their mycoparasitic capabilities.

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