Cargando…

Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses

Although tocopherols play an important role in plants and animals, the genetic architecture of tocopherol content in maize kernels has remained largely unknown. In this study, linkage and association analyses were conducted to examine the genetic architecture of tocopherol content in maize kernels....

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Hong, Xu, Shutu, Fan, Yaming, Liu, Nannan, Zhan, Wei, Liu, Haijun, Xiao, Yingjie, Li, Kun, Pan, Qingchun, Li, Wenqiang, Deng, Min, Liu, Jie, Jin, Min, Yang, Xiaohong, Li, Jiansheng, Li, Qing, Yan, Jianbing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6041443/
https://www.ncbi.nlm.nih.gov/pubmed/29356296
http://dx.doi.org/10.1111/pbi.12889
_version_ 1783338997461811200
author Wang, Hong
Xu, Shutu
Fan, Yaming
Liu, Nannan
Zhan, Wei
Liu, Haijun
Xiao, Yingjie
Li, Kun
Pan, Qingchun
Li, Wenqiang
Deng, Min
Liu, Jie
Jin, Min
Yang, Xiaohong
Li, Jiansheng
Li, Qing
Yan, Jianbing
author_facet Wang, Hong
Xu, Shutu
Fan, Yaming
Liu, Nannan
Zhan, Wei
Liu, Haijun
Xiao, Yingjie
Li, Kun
Pan, Qingchun
Li, Wenqiang
Deng, Min
Liu, Jie
Jin, Min
Yang, Xiaohong
Li, Jiansheng
Li, Qing
Yan, Jianbing
author_sort Wang, Hong
collection PubMed
description Although tocopherols play an important role in plants and animals, the genetic architecture of tocopherol content in maize kernels has remained largely unknown. In this study, linkage and association analyses were conducted to examine the genetic architecture of tocopherol content in maize kernels. Forty‐one unique quantitative trait loci (QTLs) were identified by linkage mapping in six populations of recombinant inbred lines (RILs). In addition, 32 significant loci were detected via genome‐wide association study (GWAS), 18 of which colocalized with the QTLs identified by linkage mapping. Fine mapping of a major QTL validated the accuracy of GWAS and QTL mapping results and suggested a role for nontocopherol pathway genes in the modulation of natural tocopherol variation. We provided genome‐wide evidence that genes involved in fatty acid metabolism, chlorophyll metabolism and chloroplast function may affect natural variation in tocopherols. These findings were confirmed through mutant analysis of a particular gene from the fatty acid pathway. In addition, the favourable alleles for many of the significant SNPs/QTLs represented rare alleles in natural populations. Together, our results revealed many novel genes that are potentially involved in the variation of tocopherol content in maize kernels. Pyramiding of the favourable alleles of the newly elucidated genes and the well‐known tocopherol pathway genes would greatly improve tocopherol content in maize.
format Online
Article
Text
id pubmed-6041443
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-60414432018-07-15 Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses Wang, Hong Xu, Shutu Fan, Yaming Liu, Nannan Zhan, Wei Liu, Haijun Xiao, Yingjie Li, Kun Pan, Qingchun Li, Wenqiang Deng, Min Liu, Jie Jin, Min Yang, Xiaohong Li, Jiansheng Li, Qing Yan, Jianbing Plant Biotechnol J Research Articles Although tocopherols play an important role in plants and animals, the genetic architecture of tocopherol content in maize kernels has remained largely unknown. In this study, linkage and association analyses were conducted to examine the genetic architecture of tocopherol content in maize kernels. Forty‐one unique quantitative trait loci (QTLs) were identified by linkage mapping in six populations of recombinant inbred lines (RILs). In addition, 32 significant loci were detected via genome‐wide association study (GWAS), 18 of which colocalized with the QTLs identified by linkage mapping. Fine mapping of a major QTL validated the accuracy of GWAS and QTL mapping results and suggested a role for nontocopherol pathway genes in the modulation of natural tocopherol variation. We provided genome‐wide evidence that genes involved in fatty acid metabolism, chlorophyll metabolism and chloroplast function may affect natural variation in tocopherols. These findings were confirmed through mutant analysis of a particular gene from the fatty acid pathway. In addition, the favourable alleles for many of the significant SNPs/QTLs represented rare alleles in natural populations. Together, our results revealed many novel genes that are potentially involved in the variation of tocopherol content in maize kernels. Pyramiding of the favourable alleles of the newly elucidated genes and the well‐known tocopherol pathway genes would greatly improve tocopherol content in maize. John Wiley and Sons Inc. 2018-02-20 2018-08 /pmc/articles/PMC6041443/ /pubmed/29356296 http://dx.doi.org/10.1111/pbi.12889 Text en © 2018 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wang, Hong
Xu, Shutu
Fan, Yaming
Liu, Nannan
Zhan, Wei
Liu, Haijun
Xiao, Yingjie
Li, Kun
Pan, Qingchun
Li, Wenqiang
Deng, Min
Liu, Jie
Jin, Min
Yang, Xiaohong
Li, Jiansheng
Li, Qing
Yan, Jianbing
Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title_full Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title_fullStr Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title_full_unstemmed Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title_short Beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
title_sort beyond pathways: genetic dissection of tocopherol content in maize kernels by combining linkage and association analyses
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6041443/
https://www.ncbi.nlm.nih.gov/pubmed/29356296
http://dx.doi.org/10.1111/pbi.12889
work_keys_str_mv AT wanghong beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT xushutu beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT fanyaming beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT liunannan beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT zhanwei beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT liuhaijun beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT xiaoyingjie beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT likun beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT panqingchun beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT liwenqiang beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT dengmin beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT liujie beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT jinmin beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT yangxiaohong beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT lijiansheng beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT liqing beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses
AT yanjianbing beyondpathwaysgeneticdissectionoftocopherolcontentinmaizekernelsbycombininglinkageandassociationanalyses