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A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800

The multi-parent-advanced-generation-intercross (MAGIC) population WM-800 was developed by intercrossing eight modern winter wheat cultivars to enhance the genetic diversity present in breeding populations. We cultivated WM-800 during two seasons in seven environments under two contrasting nitrogen...

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Autores principales: Lisker, Antonia, Maurer, Andreas, Schmutzer, Thomas, Kazman, Ebrahim, Cöster, Hilmar, Holzapfel, Josef, Ebmeyer, Erhard, Alqudah, Ahmad M., Sannemann, Wiebke, Pillen, Klaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784842/
https://www.ncbi.nlm.nih.gov/pubmed/36559621
http://dx.doi.org/10.3390/plants11243508
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author Lisker, Antonia
Maurer, Andreas
Schmutzer, Thomas
Kazman, Ebrahim
Cöster, Hilmar
Holzapfel, Josef
Ebmeyer, Erhard
Alqudah, Ahmad M.
Sannemann, Wiebke
Pillen, Klaus
author_facet Lisker, Antonia
Maurer, Andreas
Schmutzer, Thomas
Kazman, Ebrahim
Cöster, Hilmar
Holzapfel, Josef
Ebmeyer, Erhard
Alqudah, Ahmad M.
Sannemann, Wiebke
Pillen, Klaus
author_sort Lisker, Antonia
collection PubMed
description The multi-parent-advanced-generation-intercross (MAGIC) population WM-800 was developed by intercrossing eight modern winter wheat cultivars to enhance the genetic diversity present in breeding populations. We cultivated WM-800 during two seasons in seven environments under two contrasting nitrogen fertilization treatments. WM-800 lines exhibited highly significant differences between treatments, as well as high heritabilities among the seven agronomic traits studied. The highest-yielding WM-line achieved an average yield increase of 4.40 dt/ha (5.2%) compared to the best founder cultivar Tobak. The subsequent genome-wide-association-study (GWAS), which was based on haplotypes, located QTL for seven agronomic traits including grain yield. In total, 40, 51, and 46 QTL were detected under low, high, and across nitrogen treatments, respectively. For example, the effect of QYLD_3A could be associated with the haplotype allele of cultivar Julius increasing yield by an average of 4.47 dt/ha (5.2%). A novel QTL on chromosome 2B exhibited pleiotropic effects, acting simultaneously on three-grain yield components (ears-per-square-meter, grains-per-ear, and thousand-grain-weight) and plant-height. These effects may be explained by a member of the nitrate-transporter-1 (NRT1)/peptide-family, TaNPF5.34, located 1.05 Mb apart. The WM-800 lines and favorable QTL haplotypes, associated with yield improvements, are currently implemented in wheat breeding programs to develop advanced nitrogen-use efficient wheat cultivars.
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spelling pubmed-97848422022-12-24 A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800 Lisker, Antonia Maurer, Andreas Schmutzer, Thomas Kazman, Ebrahim Cöster, Hilmar Holzapfel, Josef Ebmeyer, Erhard Alqudah, Ahmad M. Sannemann, Wiebke Pillen, Klaus Plants (Basel) Article The multi-parent-advanced-generation-intercross (MAGIC) population WM-800 was developed by intercrossing eight modern winter wheat cultivars to enhance the genetic diversity present in breeding populations. We cultivated WM-800 during two seasons in seven environments under two contrasting nitrogen fertilization treatments. WM-800 lines exhibited highly significant differences between treatments, as well as high heritabilities among the seven agronomic traits studied. The highest-yielding WM-line achieved an average yield increase of 4.40 dt/ha (5.2%) compared to the best founder cultivar Tobak. The subsequent genome-wide-association-study (GWAS), which was based on haplotypes, located QTL for seven agronomic traits including grain yield. In total, 40, 51, and 46 QTL were detected under low, high, and across nitrogen treatments, respectively. For example, the effect of QYLD_3A could be associated with the haplotype allele of cultivar Julius increasing yield by an average of 4.47 dt/ha (5.2%). A novel QTL on chromosome 2B exhibited pleiotropic effects, acting simultaneously on three-grain yield components (ears-per-square-meter, grains-per-ear, and thousand-grain-weight) and plant-height. These effects may be explained by a member of the nitrate-transporter-1 (NRT1)/peptide-family, TaNPF5.34, located 1.05 Mb apart. The WM-800 lines and favorable QTL haplotypes, associated with yield improvements, are currently implemented in wheat breeding programs to develop advanced nitrogen-use efficient wheat cultivars. MDPI 2022-12-14 /pmc/articles/PMC9784842/ /pubmed/36559621 http://dx.doi.org/10.3390/plants11243508 Text en © 2022 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
Lisker, Antonia
Maurer, Andreas
Schmutzer, Thomas
Kazman, Ebrahim
Cöster, Hilmar
Holzapfel, Josef
Ebmeyer, Erhard
Alqudah, Ahmad M.
Sannemann, Wiebke
Pillen, Klaus
A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title_full A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title_fullStr A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title_full_unstemmed A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title_short A Haplotype-Based GWAS Identified Trait-Improving QTL Alleles Controlling Agronomic Traits under Contrasting Nitrogen Fertilization Treatments in the MAGIC Wheat Population WM-800
title_sort haplotype-based gwas identified trait-improving qtl alleles controlling agronomic traits under contrasting nitrogen fertilization treatments in the magic wheat population wm-800
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784842/
https://www.ncbi.nlm.nih.gov/pubmed/36559621
http://dx.doi.org/10.3390/plants11243508
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