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Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat

The Hessian fly (HF) is an invasive insect that has caused millions of dollars in yield losses to southeastern US wheat farms. Genetic resistance is the most sustainable solution to control HF. However, emerging biotypes are quickly overcoming resistance genes in the southeast; therefore, identifyin...

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Autores principales: Bagwell, John W., Subedi, Madhav, Sapkota, Suraj, Lopez, Benjamin, Ghimire, Bikash, Chen, Zhenbang, Buntin, G. David, Bahri, Bochra A., Mergoum, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531203/
https://www.ncbi.nlm.nih.gov/pubmed/37761952
http://dx.doi.org/10.3390/genes14091812
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author Bagwell, John W.
Subedi, Madhav
Sapkota, Suraj
Lopez, Benjamin
Ghimire, Bikash
Chen, Zhenbang
Buntin, G. David
Bahri, Bochra A.
Mergoum, Mohamed
author_facet Bagwell, John W.
Subedi, Madhav
Sapkota, Suraj
Lopez, Benjamin
Ghimire, Bikash
Chen, Zhenbang
Buntin, G. David
Bahri, Bochra A.
Mergoum, Mohamed
author_sort Bagwell, John W.
collection PubMed
description The Hessian fly (HF) is an invasive insect that has caused millions of dollars in yield losses to southeastern US wheat farms. Genetic resistance is the most sustainable solution to control HF. However, emerging biotypes are quickly overcoming resistance genes in the southeast; therefore, identifying novel sources of resistance is critical. The resistant line “UGA 111729” and susceptible variety “AGS 2038” were crossbred to generate a population of 225 recombinant inbred lines. This population was phenotyped in the growth chamber (GC) during 2019 and 2021 and in field (F) trials in Georgia during the 2021–2022 growing seasons. Visual scoring was utilized in GC studies. The percentage of infested tillers and number of pupae/larvae per tiller, and infested tiller per sample were measured in studies from 2021 to 2022. Averaging across all traits, a major QTL on chromosome 3D explained 42.27% (GC) and 10.43% (F) phenotypic variance within 9.86 centimorgans (cM). SNP marker IWB65911 was associated with the quantitative trait locus (QTL) peak with logarithm of odds (LOD) values of 14.98 (F) and 62.22 (GC). IWB65911 colocalized with resistance gene H32. KASP marker validation verified that UGA 111729 and KS89WGRC06 express H32. IWB65911 may be used for marker-assisted selection.
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spelling pubmed-105312032023-09-28 Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat Bagwell, John W. Subedi, Madhav Sapkota, Suraj Lopez, Benjamin Ghimire, Bikash Chen, Zhenbang Buntin, G. David Bahri, Bochra A. Mergoum, Mohamed Genes (Basel) Article The Hessian fly (HF) is an invasive insect that has caused millions of dollars in yield losses to southeastern US wheat farms. Genetic resistance is the most sustainable solution to control HF. However, emerging biotypes are quickly overcoming resistance genes in the southeast; therefore, identifying novel sources of resistance is critical. The resistant line “UGA 111729” and susceptible variety “AGS 2038” were crossbred to generate a population of 225 recombinant inbred lines. This population was phenotyped in the growth chamber (GC) during 2019 and 2021 and in field (F) trials in Georgia during the 2021–2022 growing seasons. Visual scoring was utilized in GC studies. The percentage of infested tillers and number of pupae/larvae per tiller, and infested tiller per sample were measured in studies from 2021 to 2022. Averaging across all traits, a major QTL on chromosome 3D explained 42.27% (GC) and 10.43% (F) phenotypic variance within 9.86 centimorgans (cM). SNP marker IWB65911 was associated with the quantitative trait locus (QTL) peak with logarithm of odds (LOD) values of 14.98 (F) and 62.22 (GC). IWB65911 colocalized with resistance gene H32. KASP marker validation verified that UGA 111729 and KS89WGRC06 express H32. IWB65911 may be used for marker-assisted selection. MDPI 2023-09-17 /pmc/articles/PMC10531203/ /pubmed/37761952 http://dx.doi.org/10.3390/genes14091812 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
Bagwell, John W.
Subedi, Madhav
Sapkota, Suraj
Lopez, Benjamin
Ghimire, Bikash
Chen, Zhenbang
Buntin, G. David
Bahri, Bochra A.
Mergoum, Mohamed
Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title_full Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title_fullStr Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title_full_unstemmed Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title_short Quantitative Trait Locus Analysis of Hessian Fly Resistance in Soft Red Winter Wheat
title_sort quantitative trait locus analysis of hessian fly resistance in soft red winter wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531203/
https://www.ncbi.nlm.nih.gov/pubmed/37761952
http://dx.doi.org/10.3390/genes14091812
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