Cargando…

A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population

Crop productivity is highly dependent on the application of N fertilizers, but ever-increasing N application is causing serious environmental impacts. To facilitate the development of new wheat cultivars that can thrive in low N growth conditions, key loci and genes associated with wheat responses t...

Descripción completa

Detalles Bibliográficos
Autores principales: Xiong, Hongchun, Guo, Huijun, Zhou, Chunyun, Guo, Xiaotong, Xie, Yongdun, Zhao, Linshu, Gu, Jiayu, Zhao, Shirong, Ding, Yuping, Liu, Luxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6353201/
https://www.ncbi.nlm.nih.gov/pubmed/30699181
http://dx.doi.org/10.1371/journal.pone.0211492
_version_ 1783390980124180480
author Xiong, Hongchun
Guo, Huijun
Zhou, Chunyun
Guo, Xiaotong
Xie, Yongdun
Zhao, Linshu
Gu, Jiayu
Zhao, Shirong
Ding, Yuping
Liu, Luxiang
author_facet Xiong, Hongchun
Guo, Huijun
Zhou, Chunyun
Guo, Xiaotong
Xie, Yongdun
Zhao, Linshu
Gu, Jiayu
Zhao, Shirong
Ding, Yuping
Liu, Luxiang
author_sort Xiong, Hongchun
collection PubMed
description Crop productivity is highly dependent on the application of N fertilizers, but ever-increasing N application is causing serious environmental impacts. To facilitate the development of new wheat cultivars that can thrive in low N growth conditions, key loci and genes associated with wheat responses to low N must be identified. In this GWAS and t-test study of 190 M(6) mutant wheat lines (Jing 411-derived) based on genotype data from the wheat 660k SNP array, we identified a total of 221 significant SNPs associated four seedling phenotypic traits that have been implicated in resistance to low N: relative root length, relative shoot length, relative root weight, and relative shoot weight. Notably, we detected large numbers of significantly associated SNP in what appear to be genomic ‘hotspots’ for resistance to low N on chromosomes 2A and 6B, strongly suggesting that these regions are functionally related to the resistance phenotypes that we observed in some of the mutant lines. Moreover, the candidate genes, including genes encoding high-affinity nitrate transporter 2.1, gibberellin responsive protein, were identified for resistance to low N. This study raises plausible mechanistic hypotheses that can be evaluated in future applied or basic efforts by breeders or plant biologists seeking to develop new high-NUE wheat cultivars.
format Online
Article
Text
id pubmed-6353201
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-63532012019-02-15 A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population Xiong, Hongchun Guo, Huijun Zhou, Chunyun Guo, Xiaotong Xie, Yongdun Zhao, Linshu Gu, Jiayu Zhao, Shirong Ding, Yuping Liu, Luxiang PLoS One Research Article Crop productivity is highly dependent on the application of N fertilizers, but ever-increasing N application is causing serious environmental impacts. To facilitate the development of new wheat cultivars that can thrive in low N growth conditions, key loci and genes associated with wheat responses to low N must be identified. In this GWAS and t-test study of 190 M(6) mutant wheat lines (Jing 411-derived) based on genotype data from the wheat 660k SNP array, we identified a total of 221 significant SNPs associated four seedling phenotypic traits that have been implicated in resistance to low N: relative root length, relative shoot length, relative root weight, and relative shoot weight. Notably, we detected large numbers of significantly associated SNP in what appear to be genomic ‘hotspots’ for resistance to low N on chromosomes 2A and 6B, strongly suggesting that these regions are functionally related to the resistance phenotypes that we observed in some of the mutant lines. Moreover, the candidate genes, including genes encoding high-affinity nitrate transporter 2.1, gibberellin responsive protein, were identified for resistance to low N. This study raises plausible mechanistic hypotheses that can be evaluated in future applied or basic efforts by breeders or plant biologists seeking to develop new high-NUE wheat cultivars. Public Library of Science 2019-01-30 /pmc/articles/PMC6353201/ /pubmed/30699181 http://dx.doi.org/10.1371/journal.pone.0211492 Text en © 2019 Xiong 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
Xiong, Hongchun
Guo, Huijun
Zhou, Chunyun
Guo, Xiaotong
Xie, Yongdun
Zhao, Linshu
Gu, Jiayu
Zhao, Shirong
Ding, Yuping
Liu, Luxiang
A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title_full A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title_fullStr A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title_full_unstemmed A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title_short A combined association mapping and t-test analysis of SNP loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
title_sort combined association mapping and t-test analysis of snp loci and candidate genes involving in resistance to low nitrogen traits by a wheat mutant population
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6353201/
https://www.ncbi.nlm.nih.gov/pubmed/30699181
http://dx.doi.org/10.1371/journal.pone.0211492
work_keys_str_mv AT xionghongchun acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT guohuijun acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhouchunyun acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT guoxiaotong acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT xieyongdun acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhaolinshu acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT gujiayu acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhaoshirong acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT dingyuping acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT liuluxiang acombinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT xionghongchun combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT guohuijun combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhouchunyun combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT guoxiaotong combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT xieyongdun combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhaolinshu combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT gujiayu combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT zhaoshirong combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT dingyuping combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation
AT liuluxiang combinedassociationmappingandttestanalysisofsnplociandcandidategenesinvolvinginresistancetolownitrogentraitsbyawheatmutantpopulation