Regulation of secondary metabolism in the anthracnose fungus Colletotrichum higginsianum - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement Accéder directement au contenu
Poster De Conférence Année : 2016

Regulation of secondary metabolism in the anthracnose fungus Colletotrichum higginsianum

Résumé

Species of the genus Colletotrichum cause devastating anthracnose or blight diseases on numerous crop plants worldwide. C. higginsianum uses a hemibiotrophic strategy to infect Arabidopsis and other Brassicaceae. Its genome contains a large number of genes (87) encoding secondary metabolism (SM) key enzymes. As in other fungi, these key genes are organized into clusters that may also contain genes encoding accessory enzymes of the same biosynthetic pathway, efflux transporters and pathway-specific transcription factors. A remarkable finding from RNA-Seq transcriptome profiling was that 27 SM clusters are specifically expressed only in planta by appressoria and/or biotrophic hyphae. Since each cluster potentially synthesizes one final metabolite, this suggests appressoriaand biotrophic hyphae deliver a cocktail of different metabolites to the first infected host cell. To identify and characterise these metabolites we need to mass-produce them from in vitro cultures. We therefore deleted histone-modifying enzymes controlling chromatin status and over-expressed global transcriptional regulators (e.g. Dim5, Hp1, Kmt6, CclA, Sge1). This lead to the discovery of metabolites which are not produced by wild type mycelia in vitro. Bioassays are ongoing to evaluate their biological activities against plants, bacteria and fungi.
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Dates et versions

hal-02801217 , version 1 (05-06-2020)

Identifiants

  • HAL Id : hal-02801217 , version 1
  • PRODINRA : 352047

Citer

Jean-Felix Dallery, Emilie Adelin, Sandrine Pigné, Olivier Lespinet, Jamal Ouazzani, et al.. Regulation of secondary metabolism in the anthracnose fungus Colletotrichum higginsianum. ECFG13 European conference on fungal genetic, Apr 2016, PARIS LA VILLETTE, France. p.551, 2016. ⟨hal-02801217⟩
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