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A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici

Succinate dehydrogenase inhibitor (SDHI) fungicides are widely used for the control of a broad range of fungal diseases. This has been the most rapidly expanding fungicide group in terms of new molecules discovered and introduced for agricultural use over the past fifteen years. A particular pattern...

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Autores principales: Steinhauer, Diana, Salat, Marie, Frey, Regula, Mosbach, Andreas, Luksch, Torsten, Balmer, Dirk, Hansen, Rasmus, Widdison, Stephanie, Logan, Grace, Dietrich, Robert A., Kema, Gert H. J., Bieri, Stephane, Sierotzki, Helge, Torriani, Stefano F. F., Scalliet, Gabriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6941823/
https://www.ncbi.nlm.nih.gov/pubmed/31860693
http://dx.doi.org/10.1371/journal.ppat.1007780
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author Steinhauer, Diana
Salat, Marie
Frey, Regula
Mosbach, Andreas
Luksch, Torsten
Balmer, Dirk
Hansen, Rasmus
Widdison, Stephanie
Logan, Grace
Dietrich, Robert A.
Kema, Gert H. J.
Bieri, Stephane
Sierotzki, Helge
Torriani, Stefano F. F.
Scalliet, Gabriel
author_facet Steinhauer, Diana
Salat, Marie
Frey, Regula
Mosbach, Andreas
Luksch, Torsten
Balmer, Dirk
Hansen, Rasmus
Widdison, Stephanie
Logan, Grace
Dietrich, Robert A.
Kema, Gert H. J.
Bieri, Stephane
Sierotzki, Helge
Torriani, Stefano F. F.
Scalliet, Gabriel
author_sort Steinhauer, Diana
collection PubMed
description Succinate dehydrogenase inhibitor (SDHI) fungicides are widely used for the control of a broad range of fungal diseases. This has been the most rapidly expanding fungicide group in terms of new molecules discovered and introduced for agricultural use over the past fifteen years. A particular pattern of differential sensitivity (resistance) to the stretched heterocycle amide SDHIs (SHA-SDHIs), a subclass of chemically-related SDHIs, was observed in naïve Zymoseptoria tritici populations not previously exposed to these chemicals. Subclass-specific resistance was confirmed at the enzyme level but did not correlate with the genotypes of the succinate dehydrogenase (SDH) encoding genes. Mapping and characterization of the molecular mechanisms responsible for standing SHA-SDHI resistance in natural field isolates identified a gene paralog of SDHC, termed ZtSDHC3, which encodes for an alternative C subunit of succinate dehydrogenase, named alt-SDHC. Using reverse genetics, we showed that alt-SDHC associates with the three other SDH subunits, leading to a fully functional enzyme and that a unique Qp-site residue within the alt-SDHC protein confers SHA-SDHI resistance. Enzymatic assays, computational modelling and docking simulations for the two SQR enzymes (altC-SQR, WT_SQR) enabled us to describe enzyme-inhibitor interactions at an atomistic level and to propose rational explanations for differential potency and resistance across SHA-SDHIs. European Z. tritici populations displayed a presence (20–30%) / absence polymorphism of ZtSDHC3, as well as differences in ZtSDHC3 expression levels and splicing efficiency. These polymorphisms have a strong impact on SHA-SDHI resistance phenotypes. Characterization of the ZtSDHC3 promoter in European Z. tritici populations suggests that transposon insertions are associated with the strongest resistance phenotypes. These results establish that a dispensable paralogous gene determines SHA-SDHIs fungicide resistance in natural populations of Z. tritici. This study paves the way to an increased awareness of the role of fungicidal target paralogs in resistance to fungicides and demonstrates the paramount importance of population genomics in fungicide discovery.
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spelling pubmed-69418232020-01-10 A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici Steinhauer, Diana Salat, Marie Frey, Regula Mosbach, Andreas Luksch, Torsten Balmer, Dirk Hansen, Rasmus Widdison, Stephanie Logan, Grace Dietrich, Robert A. Kema, Gert H. J. Bieri, Stephane Sierotzki, Helge Torriani, Stefano F. F. Scalliet, Gabriel PLoS Pathog Research Article Succinate dehydrogenase inhibitor (SDHI) fungicides are widely used for the control of a broad range of fungal diseases. This has been the most rapidly expanding fungicide group in terms of new molecules discovered and introduced for agricultural use over the past fifteen years. A particular pattern of differential sensitivity (resistance) to the stretched heterocycle amide SDHIs (SHA-SDHIs), a subclass of chemically-related SDHIs, was observed in naïve Zymoseptoria tritici populations not previously exposed to these chemicals. Subclass-specific resistance was confirmed at the enzyme level but did not correlate with the genotypes of the succinate dehydrogenase (SDH) encoding genes. Mapping and characterization of the molecular mechanisms responsible for standing SHA-SDHI resistance in natural field isolates identified a gene paralog of SDHC, termed ZtSDHC3, which encodes for an alternative C subunit of succinate dehydrogenase, named alt-SDHC. Using reverse genetics, we showed that alt-SDHC associates with the three other SDH subunits, leading to a fully functional enzyme and that a unique Qp-site residue within the alt-SDHC protein confers SHA-SDHI resistance. Enzymatic assays, computational modelling and docking simulations for the two SQR enzymes (altC-SQR, WT_SQR) enabled us to describe enzyme-inhibitor interactions at an atomistic level and to propose rational explanations for differential potency and resistance across SHA-SDHIs. European Z. tritici populations displayed a presence (20–30%) / absence polymorphism of ZtSDHC3, as well as differences in ZtSDHC3 expression levels and splicing efficiency. These polymorphisms have a strong impact on SHA-SDHI resistance phenotypes. Characterization of the ZtSDHC3 promoter in European Z. tritici populations suggests that transposon insertions are associated with the strongest resistance phenotypes. These results establish that a dispensable paralogous gene determines SHA-SDHIs fungicide resistance in natural populations of Z. tritici. This study paves the way to an increased awareness of the role of fungicidal target paralogs in resistance to fungicides and demonstrates the paramount importance of population genomics in fungicide discovery. Public Library of Science 2019-12-20 /pmc/articles/PMC6941823/ /pubmed/31860693 http://dx.doi.org/10.1371/journal.ppat.1007780 Text en © 2019 Steinhauer et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Steinhauer, Diana
Salat, Marie
Frey, Regula
Mosbach, Andreas
Luksch, Torsten
Balmer, Dirk
Hansen, Rasmus
Widdison, Stephanie
Logan, Grace
Dietrich, Robert A.
Kema, Gert H. J.
Bieri, Stephane
Sierotzki, Helge
Torriani, Stefano F. F.
Scalliet, Gabriel
A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title_full A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title_fullStr A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title_full_unstemmed A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title_short A dispensable paralog of succinate dehydrogenase subunit C mediates standing resistance towards a subclass of SDHI fungicides in Zymoseptoria tritici
title_sort dispensable paralog of succinate dehydrogenase subunit c mediates standing resistance towards a subclass of sdhi fungicides in zymoseptoria tritici
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6941823/
https://www.ncbi.nlm.nih.gov/pubmed/31860693
http://dx.doi.org/10.1371/journal.ppat.1007780
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