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A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat

Zymoseptoria tritici is the fungal pathogen responsible for Septoria tritici blotch on wheat. Disease outcome in this pathosystem is partly determined by isolate-specific resistance, where wheat resistance genes recognize specific fungal factors triggering an immune response. Despite the large numbe...

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Autores principales: Amezrou, Reda, Audéon, Colette, Compain, Jérôme, Gélisse, Sandrine, Ducasse, Aurélie, Saintenac, Cyrille, Lapalu, Nicolas, Louet, Clémentine, Orford, Simon, Croll, Daniel, Amselem, Joëlle, Fillinger, Sabine, Marcel, Thierry C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208482/
https://www.ncbi.nlm.nih.gov/pubmed/37172036
http://dx.doi.org/10.1371/journal.ppat.1011376
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author Amezrou, Reda
Audéon, Colette
Compain, Jérôme
Gélisse, Sandrine
Ducasse, Aurélie
Saintenac, Cyrille
Lapalu, Nicolas
Louet, Clémentine
Orford, Simon
Croll, Daniel
Amselem, Joëlle
Fillinger, Sabine
Marcel, Thierry C.
author_facet Amezrou, Reda
Audéon, Colette
Compain, Jérôme
Gélisse, Sandrine
Ducasse, Aurélie
Saintenac, Cyrille
Lapalu, Nicolas
Louet, Clémentine
Orford, Simon
Croll, Daniel
Amselem, Joëlle
Fillinger, Sabine
Marcel, Thierry C.
author_sort Amezrou, Reda
collection PubMed
description Zymoseptoria tritici is the fungal pathogen responsible for Septoria tritici blotch on wheat. Disease outcome in this pathosystem is partly determined by isolate-specific resistance, where wheat resistance genes recognize specific fungal factors triggering an immune response. Despite the large number of known wheat resistance genes, fungal molecular determinants involved in such cultivar-specific resistance remain largely unknown. We identified the avirulence factor AvrStb9 using association mapping and functional validation approaches. Pathotyping AvrStb9 transgenic strains on Stb9 cultivars, near isogenic lines and wheat mapping populations, showed that AvrStb9 interacts with Stb9 resistance gene, triggering an immune response. AvrStb9 encodes an unusually large avirulence gene with a predicted secretion signal and a protease domain. It belongs to a S41 protease family conserved across different filamentous fungi in the Ascomycota class and may constitute a core effector. AvrStb9 is also conserved among a global Z. tritici population and carries multiple amino acid substitutions caused by strong positive diversifying selection. These results demonstrate the contribution of an ‘atypical’ conserved effector protein to fungal avirulence and the role of sequence diversification in the escape of host recognition, adding to our understanding of host-pathogen interactions and the evolutionary processes underlying pathogen adaptation.
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spelling pubmed-102084822023-05-25 A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat Amezrou, Reda Audéon, Colette Compain, Jérôme Gélisse, Sandrine Ducasse, Aurélie Saintenac, Cyrille Lapalu, Nicolas Louet, Clémentine Orford, Simon Croll, Daniel Amselem, Joëlle Fillinger, Sabine Marcel, Thierry C. PLoS Pathog Research Article Zymoseptoria tritici is the fungal pathogen responsible for Septoria tritici blotch on wheat. Disease outcome in this pathosystem is partly determined by isolate-specific resistance, where wheat resistance genes recognize specific fungal factors triggering an immune response. Despite the large number of known wheat resistance genes, fungal molecular determinants involved in such cultivar-specific resistance remain largely unknown. We identified the avirulence factor AvrStb9 using association mapping and functional validation approaches. Pathotyping AvrStb9 transgenic strains on Stb9 cultivars, near isogenic lines and wheat mapping populations, showed that AvrStb9 interacts with Stb9 resistance gene, triggering an immune response. AvrStb9 encodes an unusually large avirulence gene with a predicted secretion signal and a protease domain. It belongs to a S41 protease family conserved across different filamentous fungi in the Ascomycota class and may constitute a core effector. AvrStb9 is also conserved among a global Z. tritici population and carries multiple amino acid substitutions caused by strong positive diversifying selection. These results demonstrate the contribution of an ‘atypical’ conserved effector protein to fungal avirulence and the role of sequence diversification in the escape of host recognition, adding to our understanding of host-pathogen interactions and the evolutionary processes underlying pathogen adaptation. Public Library of Science 2023-05-12 /pmc/articles/PMC10208482/ /pubmed/37172036 http://dx.doi.org/10.1371/journal.ppat.1011376 Text en © 2023 Amezrou et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Amezrou, Reda
Audéon, Colette
Compain, Jérôme
Gélisse, Sandrine
Ducasse, Aurélie
Saintenac, Cyrille
Lapalu, Nicolas
Louet, Clémentine
Orford, Simon
Croll, Daniel
Amselem, Joëlle
Fillinger, Sabine
Marcel, Thierry C.
A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title_full A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title_fullStr A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title_full_unstemmed A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title_short A secreted protease-like protein in Zymoseptoria tritici is responsible for avirulence on Stb9 resistance gene in wheat
title_sort secreted protease-like protein in zymoseptoria tritici is responsible for avirulence on stb9 resistance gene in wheat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208482/
https://www.ncbi.nlm.nih.gov/pubmed/37172036
http://dx.doi.org/10.1371/journal.ppat.1011376
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