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Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus

Blackleg is one of the major fungal diseases in oilseed rape/canola worldwide. Most commercial cultivars carry R gene-mediated qualitative resistances that confer a high level of race-specific protection against Leptosphaeria maculans, the causal fungus of blackleg disease. However, monogenic resist...

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Autores principales: Vollrath, Paul, Chawla, Harmeet S., Alnajar, Dima, Gabur, Iulian, Lee, HueyTyng, Weber, Sven, Ehrig, Lennard, Koopmann, Birger, Snowdon, Rod J., Obermeier, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8636856/
https://www.ncbi.nlm.nih.gov/pubmed/34868134
http://dx.doi.org/10.3389/fpls.2021.749491
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author Vollrath, Paul
Chawla, Harmeet S.
Alnajar, Dima
Gabur, Iulian
Lee, HueyTyng
Weber, Sven
Ehrig, Lennard
Koopmann, Birger
Snowdon, Rod J.
Obermeier, Christian
author_facet Vollrath, Paul
Chawla, Harmeet S.
Alnajar, Dima
Gabur, Iulian
Lee, HueyTyng
Weber, Sven
Ehrig, Lennard
Koopmann, Birger
Snowdon, Rod J.
Obermeier, Christian
author_sort Vollrath, Paul
collection PubMed
description Blackleg is one of the major fungal diseases in oilseed rape/canola worldwide. Most commercial cultivars carry R gene-mediated qualitative resistances that confer a high level of race-specific protection against Leptosphaeria maculans, the causal fungus of blackleg disease. However, monogenic resistances of this kind can potentially be rapidly overcome by mutations in the pathogen’s avirulence genes. To counteract pathogen adaptation in this evolutionary arms race, there is a tremendous demand for quantitative background resistance to enhance durability and efficacy of blackleg resistance in oilseed rape. In this study, we characterized genomic regions contributing to quantitative L. maculans resistance by genome-wide association studies in a multiparental mapping population derived from six parental elite varieties exhibiting quantitative resistance, which were all crossed to one common susceptible parental elite variety. Resistance was screened using a fungal isolate with no corresponding avirulence (AvrLm) to major R genes present in the parents of the mapping population. Genome-wide association studies revealed eight significantly associated quantitative trait loci (QTL) on chromosomes A07 and A09, with small effects explaining 3–6% of the phenotypic variance. Unexpectedly, the qualitative blackleg resistance gene Rlm9 was found to be located within a resistance-associated haploblock on chromosome A07. Furthermore, long-range sequence data spanning this haploblock revealed high levels of single-nucleotide and structural variants within the Rlm9 coding sequence among the parents of the mapping population. The results suggest that novel variants of Rlm9 could play a previously unknown role in expression of quantitative disease resistance in oilseed rape.
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spelling pubmed-86368562021-12-03 Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus Vollrath, Paul Chawla, Harmeet S. Alnajar, Dima Gabur, Iulian Lee, HueyTyng Weber, Sven Ehrig, Lennard Koopmann, Birger Snowdon, Rod J. Obermeier, Christian Front Plant Sci Plant Science Blackleg is one of the major fungal diseases in oilseed rape/canola worldwide. Most commercial cultivars carry R gene-mediated qualitative resistances that confer a high level of race-specific protection against Leptosphaeria maculans, the causal fungus of blackleg disease. However, monogenic resistances of this kind can potentially be rapidly overcome by mutations in the pathogen’s avirulence genes. To counteract pathogen adaptation in this evolutionary arms race, there is a tremendous demand for quantitative background resistance to enhance durability and efficacy of blackleg resistance in oilseed rape. In this study, we characterized genomic regions contributing to quantitative L. maculans resistance by genome-wide association studies in a multiparental mapping population derived from six parental elite varieties exhibiting quantitative resistance, which were all crossed to one common susceptible parental elite variety. Resistance was screened using a fungal isolate with no corresponding avirulence (AvrLm) to major R genes present in the parents of the mapping population. Genome-wide association studies revealed eight significantly associated quantitative trait loci (QTL) on chromosomes A07 and A09, with small effects explaining 3–6% of the phenotypic variance. Unexpectedly, the qualitative blackleg resistance gene Rlm9 was found to be located within a resistance-associated haploblock on chromosome A07. Furthermore, long-range sequence data spanning this haploblock revealed high levels of single-nucleotide and structural variants within the Rlm9 coding sequence among the parents of the mapping population. The results suggest that novel variants of Rlm9 could play a previously unknown role in expression of quantitative disease resistance in oilseed rape. Frontiers Media S.A. 2021-11-18 /pmc/articles/PMC8636856/ /pubmed/34868134 http://dx.doi.org/10.3389/fpls.2021.749491 Text en Copyright © 2021 Vollrath, Chawla, Alnajar, Gabur, Lee, Weber, Ehrig, Koopmann, Snowdon and Obermeier. 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
Vollrath, Paul
Chawla, Harmeet S.
Alnajar, Dima
Gabur, Iulian
Lee, HueyTyng
Weber, Sven
Ehrig, Lennard
Koopmann, Birger
Snowdon, Rod J.
Obermeier, Christian
Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title_full Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title_fullStr Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title_full_unstemmed Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title_short Dissection of Quantitative Blackleg Resistance Reveals Novel Variants of Resistance Gene Rlm9 in Elite Brassica napus
title_sort dissection of quantitative blackleg resistance reveals novel variants of resistance gene rlm9 in elite brassica napus
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8636856/
https://www.ncbi.nlm.nih.gov/pubmed/34868134
http://dx.doi.org/10.3389/fpls.2021.749491
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