Cargando…

QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat

Wheat yield is highly correlated with plant height, heading date, spike characteristics, and kernel traits. In this study, we used the wheat55K single nucleotide polymorphism array to genotype a recombinant inbred line population of 165 lines constructed by crossing two tetraploid wheat materials, I...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Chao, Liu, Le, Liu, Tianxiang, Jia, Yatao, Jiang, Qinqin, Bai, Haibo, Ma, Sishuang, Li, Shuhua, Wang, Zhonghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964379/
https://www.ncbi.nlm.nih.gov/pubmed/36840195
http://dx.doi.org/10.3390/plants12040847
_version_ 1784896490753228800
author Ma, Chao
Liu, Le
Liu, Tianxiang
Jia, Yatao
Jiang, Qinqin
Bai, Haibo
Ma, Sishuang
Li, Shuhua
Wang, Zhonghua
author_facet Ma, Chao
Liu, Le
Liu, Tianxiang
Jia, Yatao
Jiang, Qinqin
Bai, Haibo
Ma, Sishuang
Li, Shuhua
Wang, Zhonghua
author_sort Ma, Chao
collection PubMed
description Wheat yield is highly correlated with plant height, heading date, spike characteristics, and kernel traits. In this study, we used the wheat55K single nucleotide polymorphism array to genotype a recombinant inbred line population of 165 lines constructed by crossing two tetraploid wheat materials, Icaro and Y4. A genetic linkage map with a total length of 6244.51 cM was constructed, covering 14 chromosomes of tetraploid wheat. QTLs for 12 important agronomic traits, including plant height (PH), heading date (HD), awn color (AC), spike-branching (SB), and related traits of spike and kernel, were mapped in multiple environments, while combined QTL-by-environment interactions and epistatic effects were analyzed for each trait. A total of 52 major or stable QTLs were identified, among which may be some novel loci controlling PH, SB, and kernel length-width ratio (LWR), etc., with LOD values ranging from 2.51 to 54.49, thereby explaining 2.40–66.27% of the phenotypic variation. Based on the ‘China Spring’ and durum wheat reference genome annotations, candidate genes were predicted for four stable QTLs, QPH.nwafu-2B.2 (165.67–166.99 cM), QAC.nwafu-3A.1 (419.89–420.52 cM), QAC.nwafu-4A.1 (424.31–447.4 cM), and QLWR.nwafu-7A.1 (166.66–175.46 cM). Thirty-one QTL clusters and 44 segregation distortion regions were also detected, and 38 and 18 major or stable QTLs were included in these clusters and segregation distortion regions, respectively. These results provide QTLs with breeding application potential in tetraploid wheat that broadens the genetic basis of important agronomic traits such as PH, HD, AC, SB, etc., and benefits wheat breeding.
format Online
Article
Text
id pubmed-9964379
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99643792023-02-26 QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat Ma, Chao Liu, Le Liu, Tianxiang Jia, Yatao Jiang, Qinqin Bai, Haibo Ma, Sishuang Li, Shuhua Wang, Zhonghua Plants (Basel) Article Wheat yield is highly correlated with plant height, heading date, spike characteristics, and kernel traits. In this study, we used the wheat55K single nucleotide polymorphism array to genotype a recombinant inbred line population of 165 lines constructed by crossing two tetraploid wheat materials, Icaro and Y4. A genetic linkage map with a total length of 6244.51 cM was constructed, covering 14 chromosomes of tetraploid wheat. QTLs for 12 important agronomic traits, including plant height (PH), heading date (HD), awn color (AC), spike-branching (SB), and related traits of spike and kernel, were mapped in multiple environments, while combined QTL-by-environment interactions and epistatic effects were analyzed for each trait. A total of 52 major or stable QTLs were identified, among which may be some novel loci controlling PH, SB, and kernel length-width ratio (LWR), etc., with LOD values ranging from 2.51 to 54.49, thereby explaining 2.40–66.27% of the phenotypic variation. Based on the ‘China Spring’ and durum wheat reference genome annotations, candidate genes were predicted for four stable QTLs, QPH.nwafu-2B.2 (165.67–166.99 cM), QAC.nwafu-3A.1 (419.89–420.52 cM), QAC.nwafu-4A.1 (424.31–447.4 cM), and QLWR.nwafu-7A.1 (166.66–175.46 cM). Thirty-one QTL clusters and 44 segregation distortion regions were also detected, and 38 and 18 major or stable QTLs were included in these clusters and segregation distortion regions, respectively. These results provide QTLs with breeding application potential in tetraploid wheat that broadens the genetic basis of important agronomic traits such as PH, HD, AC, SB, etc., and benefits wheat breeding. MDPI 2023-02-14 /pmc/articles/PMC9964379/ /pubmed/36840195 http://dx.doi.org/10.3390/plants12040847 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
Ma, Chao
Liu, Le
Liu, Tianxiang
Jia, Yatao
Jiang, Qinqin
Bai, Haibo
Ma, Sishuang
Li, Shuhua
Wang, Zhonghua
QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title_full QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title_fullStr QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title_full_unstemmed QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title_short QTL Mapping for Important Agronomic Traits Using a Wheat55K SNP Array-Based Genetic Map in Tetraploid Wheat
title_sort qtl mapping for important agronomic traits using a wheat55k snp array-based genetic map in tetraploid wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964379/
https://www.ncbi.nlm.nih.gov/pubmed/36840195
http://dx.doi.org/10.3390/plants12040847
work_keys_str_mv AT machao qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT liule qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT liutianxiang qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT jiayatao qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT jiangqinqin qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT baihaibo qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT masishuang qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT lishuhua qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat
AT wangzhonghua qtlmappingforimportantagronomictraitsusingawheat55ksnparraybasedgeneticmapintetraploidwheat