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Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects

Septoria leaf blotch is a foliar wheat disease controlled by a combination of plant genetic resistances and fungicides use. R-gene-based qualitative resistance durability is limited due to gene-for-gene interactions with fungal avirulence (Avr) genes. Quantitative resistance is considered more durab...

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Autores principales: Langlands-Perry, Camilla, Pitarch, Anaïs, Lapalu, Nicolas, Cuenin, Murielle, Bergez, Christophe, Noly, Alicia, Amezrou, Reda, Gélisse, Sandrine, Barrachina, Célia, Parrinello, Hugues, Suffert, Frédéric, Valade, Romain, Marcel, Thierry C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10206311/
https://www.ncbi.nlm.nih.gov/pubmed/37235026
http://dx.doi.org/10.3389/fpls.2023.1128546
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author Langlands-Perry, Camilla
Pitarch, Anaïs
Lapalu, Nicolas
Cuenin, Murielle
Bergez, Christophe
Noly, Alicia
Amezrou, Reda
Gélisse, Sandrine
Barrachina, Célia
Parrinello, Hugues
Suffert, Frédéric
Valade, Romain
Marcel, Thierry C.
author_facet Langlands-Perry, Camilla
Pitarch, Anaïs
Lapalu, Nicolas
Cuenin, Murielle
Bergez, Christophe
Noly, Alicia
Amezrou, Reda
Gélisse, Sandrine
Barrachina, Célia
Parrinello, Hugues
Suffert, Frédéric
Valade, Romain
Marcel, Thierry C.
author_sort Langlands-Perry, Camilla
collection PubMed
description Septoria leaf blotch is a foliar wheat disease controlled by a combination of plant genetic resistances and fungicides use. R-gene-based qualitative resistance durability is limited due to gene-for-gene interactions with fungal avirulence (Avr) genes. Quantitative resistance is considered more durable but the mechanisms involved are not well documented. We hypothesize that genes involved in quantitative and qualitative plant-pathogen interactions are similar. A bi-parental population of Zymoseptoria tritici was inoculated on wheat cultivar ‘Renan’ and a linkage analysis performed to map QTL. Three pathogenicity QTL, Qzt-I05-1, Qzt-I05-6 and Qzt-I07-13, were mapped on chromosomes 1, 6 and 13 in Z. tritici, and a candidate pathogenicity gene on chromosome 6 was selected based on its effector-like characteristics. The candidate gene was cloned by Agrobacterium tumefaciens-mediated transformation, and a pathology test assessed the effect of the mutant strains on ‘Renan’. This gene was demonstrated to be involved in quantitative pathogenicity. By cloning a newly annotated quantitative-effect gene in Z. tritici that is effector-like, we demonstrated that genes underlying pathogenicity QTL can be similar to Avr genes. This opens up the previously probed possibility that ‘gene-for-gene’ underlies not only qualitative but also quantitative plant-pathogen interactions in this pathosystem.
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spelling pubmed-102063112023-05-25 Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects Langlands-Perry, Camilla Pitarch, Anaïs Lapalu, Nicolas Cuenin, Murielle Bergez, Christophe Noly, Alicia Amezrou, Reda Gélisse, Sandrine Barrachina, Célia Parrinello, Hugues Suffert, Frédéric Valade, Romain Marcel, Thierry C. Front Plant Sci Plant Science Septoria leaf blotch is a foliar wheat disease controlled by a combination of plant genetic resistances and fungicides use. R-gene-based qualitative resistance durability is limited due to gene-for-gene interactions with fungal avirulence (Avr) genes. Quantitative resistance is considered more durable but the mechanisms involved are not well documented. We hypothesize that genes involved in quantitative and qualitative plant-pathogen interactions are similar. A bi-parental population of Zymoseptoria tritici was inoculated on wheat cultivar ‘Renan’ and a linkage analysis performed to map QTL. Three pathogenicity QTL, Qzt-I05-1, Qzt-I05-6 and Qzt-I07-13, were mapped on chromosomes 1, 6 and 13 in Z. tritici, and a candidate pathogenicity gene on chromosome 6 was selected based on its effector-like characteristics. The candidate gene was cloned by Agrobacterium tumefaciens-mediated transformation, and a pathology test assessed the effect of the mutant strains on ‘Renan’. This gene was demonstrated to be involved in quantitative pathogenicity. By cloning a newly annotated quantitative-effect gene in Z. tritici that is effector-like, we demonstrated that genes underlying pathogenicity QTL can be similar to Avr genes. This opens up the previously probed possibility that ‘gene-for-gene’ underlies not only qualitative but also quantitative plant-pathogen interactions in this pathosystem. Frontiers Media S.A. 2023-05-10 /pmc/articles/PMC10206311/ /pubmed/37235026 http://dx.doi.org/10.3389/fpls.2023.1128546 Text en Copyright © 2023 Langlands-Perry, Pitarch, Lapalu, Cuenin, Bergez, Noly, Amezrou, Gélisse, Barrachina, Parrinello, Suffert, Valade and Marcel https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Langlands-Perry, Camilla
Pitarch, Anaïs
Lapalu, Nicolas
Cuenin, Murielle
Bergez, Christophe
Noly, Alicia
Amezrou, Reda
Gélisse, Sandrine
Barrachina, Célia
Parrinello, Hugues
Suffert, Frédéric
Valade, Romain
Marcel, Thierry C.
Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title_full Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title_fullStr Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title_full_unstemmed Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title_short Quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
title_sort quantitative and qualitative plant-pathogen interactions call upon similar pathogenicity genes with a spectrum of effects
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10206311/
https://www.ncbi.nlm.nih.gov/pubmed/37235026
http://dx.doi.org/10.3389/fpls.2023.1128546
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