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Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)

KEY MESSAGE: SNPs and candidate genes associated with bacterial wilt resistance in Italian ryegrass were identified by sequencing the parental plants and pooled F(1) progeny of a segregating population. ABSTRACT: Italian ryegrass (Lolium multiflorum Lam.) is one of the most important forage grass sp...

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Autores principales: Knorst, Verena, Byrne, Stephen, Yates, Steven, Asp, Torben, Widmer, Franco, Studer, Bruno, Kölliker, Roland
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6449324/
https://www.ncbi.nlm.nih.gov/pubmed/30506318
http://dx.doi.org/10.1007/s00122-018-3250-z
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author Knorst, Verena
Byrne, Stephen
Yates, Steven
Asp, Torben
Widmer, Franco
Studer, Bruno
Kölliker, Roland
author_facet Knorst, Verena
Byrne, Stephen
Yates, Steven
Asp, Torben
Widmer, Franco
Studer, Bruno
Kölliker, Roland
author_sort Knorst, Verena
collection PubMed
description KEY MESSAGE: SNPs and candidate genes associated with bacterial wilt resistance in Italian ryegrass were identified by sequencing the parental plants and pooled F(1) progeny of a segregating population. ABSTRACT: Italian ryegrass (Lolium multiflorum Lam.) is one of the most important forage grass species in temperate regions. Its yield, quality and persistency can significantly be reduced by bacterial wilt, a serious disease caused by Xanthomonas translucens pv. graminis. Although a major QTL for bacterial wilt resistance has previously been reported, detailed knowledge on underlying genes and DNA markers to allow for efficient resistance breeding strategies is currently not available. We used pooled DNA sequencing to characterize a major QTL for bacterial wilt resistance of Italian ryegrass and to develop inexpensive sequence-based markers to efficiently target resistance alleles for marker-assisted recurrent selection. From the mapping population segregating for the QTL, DNA of 44 of the most resistant and 44 of the most susceptible F(1) individuals was pooled and sequenced using the Illumina HiSeq 2000 platform. Allele frequencies of 18 × 10(6) single nucleotide polymorphisms (SNP) were determined in the resistant and susceptible pool. A total of 271 SNPs on 140 scaffold sequences of the reference parental genome showed significantly different allele frequencies in both pools. We converted 44 selected SNPs to KASP™ markers, genetically mapped these proximal to the major QTL and thus validated their association with bacterial wilt resistance. This study highlights the power of pooled DNA sequencing to efficiently target binary traits in biparental mapping populations. It delivers genome sequence data, SNP markers and potential candidate genes which will allow to implement marker-assisted strategies to fix bacterial wilt resistance in outcrossing breeding populations of Italian ryegrass. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00122-018-3250-z) contains supplementary material, which is available to authorized users.
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spelling pubmed-64493242019-04-17 Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.) Knorst, Verena Byrne, Stephen Yates, Steven Asp, Torben Widmer, Franco Studer, Bruno Kölliker, Roland Theor Appl Genet Original Article KEY MESSAGE: SNPs and candidate genes associated with bacterial wilt resistance in Italian ryegrass were identified by sequencing the parental plants and pooled F(1) progeny of a segregating population. ABSTRACT: Italian ryegrass (Lolium multiflorum Lam.) is one of the most important forage grass species in temperate regions. Its yield, quality and persistency can significantly be reduced by bacterial wilt, a serious disease caused by Xanthomonas translucens pv. graminis. Although a major QTL for bacterial wilt resistance has previously been reported, detailed knowledge on underlying genes and DNA markers to allow for efficient resistance breeding strategies is currently not available. We used pooled DNA sequencing to characterize a major QTL for bacterial wilt resistance of Italian ryegrass and to develop inexpensive sequence-based markers to efficiently target resistance alleles for marker-assisted recurrent selection. From the mapping population segregating for the QTL, DNA of 44 of the most resistant and 44 of the most susceptible F(1) individuals was pooled and sequenced using the Illumina HiSeq 2000 platform. Allele frequencies of 18 × 10(6) single nucleotide polymorphisms (SNP) were determined in the resistant and susceptible pool. A total of 271 SNPs on 140 scaffold sequences of the reference parental genome showed significantly different allele frequencies in both pools. We converted 44 selected SNPs to KASP™ markers, genetically mapped these proximal to the major QTL and thus validated their association with bacterial wilt resistance. This study highlights the power of pooled DNA sequencing to efficiently target binary traits in biparental mapping populations. It delivers genome sequence data, SNP markers and potential candidate genes which will allow to implement marker-assisted strategies to fix bacterial wilt resistance in outcrossing breeding populations of Italian ryegrass. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00122-018-3250-z) contains supplementary material, which is available to authorized users. Springer Berlin Heidelberg 2018-11-30 2019 /pmc/articles/PMC6449324/ /pubmed/30506318 http://dx.doi.org/10.1007/s00122-018-3250-z Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Knorst, Verena
Byrne, Stephen
Yates, Steven
Asp, Torben
Widmer, Franco
Studer, Bruno
Kölliker, Roland
Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title_full Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title_fullStr Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title_full_unstemmed Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title_short Pooled DNA sequencing to identify SNPs associated with a major QTL for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.)
title_sort pooled dna sequencing to identify snps associated with a major qtl for bacterial wilt resistance in italian ryegrass (lolium multiflorum lam.)
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6449324/
https://www.ncbi.nlm.nih.gov/pubmed/30506318
http://dx.doi.org/10.1007/s00122-018-3250-z
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