Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat

Leaf rust of wheat ( L.) is a major disease that causes significant yield losses worldwide. The short-lived nature of leaf rust resistance () genes necessitates a continuous search for novel sources of resistance. We performed a genome-wide association study (GWAS) on a panel of 1596 wheat accession...

Full description

Bibliographic Details
Main Authors: Genqiao Li, Xiangyang Xu, Guihua Bai, Brett F. Carver, Robert Hunger, J. Michael Bonman, James Kolmer, Hongxu Dong
Format: Article
Language:English
Published: Wiley 2016-11-01
Series:The Plant Genome
Online Access:https://dl.sciencesocieties.org/publications/tpg/articles/9/3/plantgenome2016.06.0051
id doaj-9b3364592d424a4d9c05ab007d033960
record_format Article
spelling doaj-9b3364592d424a4d9c05ab007d0339602020-11-25T01:19:10ZengWileyThe Plant Genome1940-33722016-11-019310.3835/plantgenome2016.06.0051plantgenome2016.06.0051Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter WheatGenqiao LiXiangyang XuGuihua BaiBrett F. CarverRobert HungerJ. Michael BonmanJames KolmerHongxu DongLeaf rust of wheat ( L.) is a major disease that causes significant yield losses worldwide. The short-lived nature of leaf rust resistance () genes necessitates a continuous search for novel sources of resistance. We performed a genome-wide association study (GWAS) on a panel of 1596 wheat accessions. The panel was evaluated for leaf rust reaction by testing with a bulk of Eriks. () isolates collected from multiple fields of Oklahoma in 2013 and two predominant races in the fields of Oklahoma in 2015. The panel was genotyped with a set of 5011 single-nucleotide polymorphism (SNP) markers. A total of 14 quantitative trait loci (QTL) for leaf rust resistance were identified at a false discovery rate (FDR) of 0.01 using the mixed linear model (MLM). Of these, eight QTL reside in the vicinity of known genes or QTL, and more studies are needed to determine their relationship with known loci. is a new QTL to bread wheat but is close to a locus previously identified in durum wheat [ L. subsp. (Desf.) Husn.]. The other five QTL, including , , , , and , are likely novel loci for leaf rust resistance. The uneven distribution of the 14 QTL in the six subpopulations of the panel suggests that wheat breeders can enhance leaf rust resistance by selectively introgressing some of these QTL into their breeding materials. In addition, another 31 QTL were significantly associated with leaf rust resistance at a FDR of 0.05.https://dl.sciencesocieties.org/publications/tpg/articles/9/3/plantgenome2016.06.0051
collection DOAJ
language English
format Article
sources DOAJ
author Genqiao Li
Xiangyang Xu
Guihua Bai
Brett F. Carver
Robert Hunger
J. Michael Bonman
James Kolmer
Hongxu Dong
spellingShingle Genqiao Li
Xiangyang Xu
Guihua Bai
Brett F. Carver
Robert Hunger
J. Michael Bonman
James Kolmer
Hongxu Dong
Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
The Plant Genome
author_facet Genqiao Li
Xiangyang Xu
Guihua Bai
Brett F. Carver
Robert Hunger
J. Michael Bonman
James Kolmer
Hongxu Dong
author_sort Genqiao Li
title Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
title_short Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
title_full Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
title_fullStr Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
title_full_unstemmed Genome-Wide Association Mapping Reveals Novel QTL for Seedling Leaf Rust Resistance in a Worldwide Collection of Winter Wheat
title_sort genome-wide association mapping reveals novel qtl for seedling leaf rust resistance in a worldwide collection of winter wheat
publisher Wiley
series The Plant Genome
issn 1940-3372
publishDate 2016-11-01
description Leaf rust of wheat ( L.) is a major disease that causes significant yield losses worldwide. The short-lived nature of leaf rust resistance () genes necessitates a continuous search for novel sources of resistance. We performed a genome-wide association study (GWAS) on a panel of 1596 wheat accessions. The panel was evaluated for leaf rust reaction by testing with a bulk of Eriks. () isolates collected from multiple fields of Oklahoma in 2013 and two predominant races in the fields of Oklahoma in 2015. The panel was genotyped with a set of 5011 single-nucleotide polymorphism (SNP) markers. A total of 14 quantitative trait loci (QTL) for leaf rust resistance were identified at a false discovery rate (FDR) of 0.01 using the mixed linear model (MLM). Of these, eight QTL reside in the vicinity of known genes or QTL, and more studies are needed to determine their relationship with known loci. is a new QTL to bread wheat but is close to a locus previously identified in durum wheat [ L. subsp. (Desf.) Husn.]. The other five QTL, including , , , , and , are likely novel loci for leaf rust resistance. The uneven distribution of the 14 QTL in the six subpopulations of the panel suggests that wheat breeders can enhance leaf rust resistance by selectively introgressing some of these QTL into their breeding materials. In addition, another 31 QTL were significantly associated with leaf rust resistance at a FDR of 0.05.
url https://dl.sciencesocieties.org/publications/tpg/articles/9/3/plantgenome2016.06.0051
work_keys_str_mv AT genqiaoli genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT xiangyangxu genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT guihuabai genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT brettfcarver genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT roberthunger genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT jmichaelbonman genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT jameskolmer genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
AT hongxudong genomewideassociationmappingrevealsnovelqtlforseedlingleafrustresistanceinaworldwidecollectionofwinterwheat
_version_ 1725139636092665856