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Detection of Histone Modifications in Plant Leaves
Published on: September 23, 2011
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.
Abstract:
Mycoparasitism of fungal plant pathogens by Trichoderma species is a complex process that involves the production and coordinated secretion of cell-wall degrading enzymes. Genes implicated in mycoparasitism by Trichoderma atroviride contain motifs in the promoter region, designated MYRE1-MYRE4, that are proposed to act as binding sites for a global inducer of the mycoparasitic response. The aim of our study was to establish whether these motifs also were present in Trichoderma hamatum and whether the presence of these motifs could predict co-expression when T. hamatum was confronted by a pathogen. Using a combination of targeted, degenerate and inverse PCR, homologues of the mycoparasitism-related genes ech42 (chit42), prb1 and lam1.3 (xbg1.3-110), which encode an endochitinase, proteinase, and β-1,3-glucanase, respectively, were cloned and sequenced from T. hamatum. Alignment of the promoter regions of the three genes revealed identical regions in the chit42 and prb1 promoters, which were 6-9 base pairs in length and conserved in position. Specifically, the regulator y motifs MYRE1-MYRE4 were fully conserved, together with a fifth motif, identified by this research. A substrate assay designed to investigate the response of these genes from T. harzianum and T. hamatum to a simple carbon source (glycerol) showed that, in contrast to chit42 and prb1, xbg1.3-110 was not expressed. Further comparison of the expression patterns of these three genes between T. harzianum and T. hamatum using the glycerol substrate assay showed that no chit42 or prb1 expression could be detected in T. harzianum when it was grown under the same conditions as T. hamatum. This showed that the response of these genes to glycerol was species specific and that a single expression pattern for these genes was not common to all Trichoderma species. Confrontation assays were used to investigate the response of the three T. hamatum genes to the more complex substrate posed by the fungal pathogen Sclerotinia sclerotiorum. Once again gene expression analysis showed that both chit42 and prb1 were co-expressed and moderately induced during confrontation against Sclerotinia sclerotiorum. Although xbg1.3-110 previously had been implicated in mycoparasitism by T. harzianum, this study detected no xbg1.3-110 expression during confrontation between T. hamatum and S. sclerotiorum. These findings show that the MYRE1-MYRE4 together with MYRE5 are present in two species of Trichoderma, T. atroviride and T. hamatum and that the presence of these motifs could predict co-expression in response to two carbon sources.
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.

