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Mining the Australian Grains Gene Bank for Rust Resistance in Barley

Global barley production is threatened by plant pathogens, especially the rusts. In this study we used a targeted genotype-by-sequencing (GBS) assisted GWAS approach to identify rust resistance alleles in a collection of 287 genetically distinct diverse barley landraces and historical cultivars avai...

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Autores principales: Arifuzzaman, Md, Jost, Matthias, Wang, Meinan, Chen, Xianming, Perovic, Dragan, Park, Robert F., Rouse, Matthew, Forrest, Kerrie, Hayden, Matthew, Khan, Ghazanfar Abbas, Dracatos, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342048/
https://www.ncbi.nlm.nih.gov/pubmed/37446042
http://dx.doi.org/10.3390/ijms241310860
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author Arifuzzaman, Md
Jost, Matthias
Wang, Meinan
Chen, Xianming
Perovic, Dragan
Park, Robert F.
Rouse, Matthew
Forrest, Kerrie
Hayden, Matthew
Khan, Ghazanfar Abbas
Dracatos, Peter M.
author_facet Arifuzzaman, Md
Jost, Matthias
Wang, Meinan
Chen, Xianming
Perovic, Dragan
Park, Robert F.
Rouse, Matthew
Forrest, Kerrie
Hayden, Matthew
Khan, Ghazanfar Abbas
Dracatos, Peter M.
author_sort Arifuzzaman, Md
collection PubMed
description Global barley production is threatened by plant pathogens, especially the rusts. In this study we used a targeted genotype-by-sequencing (GBS) assisted GWAS approach to identify rust resistance alleles in a collection of 287 genetically distinct diverse barley landraces and historical cultivars available in the Australian Grains Genebank (AGG) and originally sourced from Eastern Europe. The accessions were challenged with seven US-derived cereal rust pathogen races including Puccinia hordei (Ph-leaf rust) race 17VA12C, P. coronata var. hordei (Pch-crown rust) race 91NE9305 and five pathogenically diverse races of P. striiformis f. sp. hordei (Psh-stripe rust) (PSH-33, PSH-48, PSH-54, PSH-72 and PSH-100) and phenotyped quantitatively at the seedling stage. Novel resistance factors were identified on chromosomes 1H, 2H, 4H and 5H in response to Pch, whereas a race-specific QTL on 7HS was identified that was effective only to Psh isolates PSH-72 and PSH-100. A major effect QTL on chromosome 5HL conferred resistance to all Psh races including PSH-72, which is virulent on all 12 stripe rust differential tester lines. The same major effect QTL was also identified in response to leaf rust (17VA12C) suggesting this locus contains several pathogen specific rust resistance genes or the same gene is responsible for both leaf rust and stripe rust resistance. Twelve accessions were highly resistant to both leaf and stripe rust diseases and also carried the 5HL QTL. We subsequently surveyed the physical region at the 5HL locus for across the barley pan genome variation in the presence of known resistance gene candidates and identified a rich source of high confidence protein kinase and antifungal genes in the QTL region.
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spelling pubmed-103420482023-07-14 Mining the Australian Grains Gene Bank for Rust Resistance in Barley Arifuzzaman, Md Jost, Matthias Wang, Meinan Chen, Xianming Perovic, Dragan Park, Robert F. Rouse, Matthew Forrest, Kerrie Hayden, Matthew Khan, Ghazanfar Abbas Dracatos, Peter M. Int J Mol Sci Article Global barley production is threatened by plant pathogens, especially the rusts. In this study we used a targeted genotype-by-sequencing (GBS) assisted GWAS approach to identify rust resistance alleles in a collection of 287 genetically distinct diverse barley landraces and historical cultivars available in the Australian Grains Genebank (AGG) and originally sourced from Eastern Europe. The accessions were challenged with seven US-derived cereal rust pathogen races including Puccinia hordei (Ph-leaf rust) race 17VA12C, P. coronata var. hordei (Pch-crown rust) race 91NE9305 and five pathogenically diverse races of P. striiformis f. sp. hordei (Psh-stripe rust) (PSH-33, PSH-48, PSH-54, PSH-72 and PSH-100) and phenotyped quantitatively at the seedling stage. Novel resistance factors were identified on chromosomes 1H, 2H, 4H and 5H in response to Pch, whereas a race-specific QTL on 7HS was identified that was effective only to Psh isolates PSH-72 and PSH-100. A major effect QTL on chromosome 5HL conferred resistance to all Psh races including PSH-72, which is virulent on all 12 stripe rust differential tester lines. The same major effect QTL was also identified in response to leaf rust (17VA12C) suggesting this locus contains several pathogen specific rust resistance genes or the same gene is responsible for both leaf rust and stripe rust resistance. Twelve accessions were highly resistant to both leaf and stripe rust diseases and also carried the 5HL QTL. We subsequently surveyed the physical region at the 5HL locus for across the barley pan genome variation in the presence of known resistance gene candidates and identified a rich source of high confidence protein kinase and antifungal genes in the QTL region. MDPI 2023-06-29 /pmc/articles/PMC10342048/ /pubmed/37446042 http://dx.doi.org/10.3390/ijms241310860 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Arifuzzaman, Md
Jost, Matthias
Wang, Meinan
Chen, Xianming
Perovic, Dragan
Park, Robert F.
Rouse, Matthew
Forrest, Kerrie
Hayden, Matthew
Khan, Ghazanfar Abbas
Dracatos, Peter M.
Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title_full Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title_fullStr Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title_full_unstemmed Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title_short Mining the Australian Grains Gene Bank for Rust Resistance in Barley
title_sort mining the australian grains gene bank for rust resistance in barley
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342048/
https://www.ncbi.nlm.nih.gov/pubmed/37446042
http://dx.doi.org/10.3390/ijms241310860
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