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Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean

The soybean (Glycine max L. merr) genotype Fiskeby III is highly resistant to a multitude of abiotic stresses, including iron deficiency, incurring only mild yield loss during stress conditions. Conversely, Mandarin (Ottawa) is highly susceptible to disease and suffers severe phenotypic damage and y...

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Autores principales: O’Rourke, Jamie A., Morrisey, Michael J., Merry, Ryan, Espina, Mary Jane, Lorenz, Aaron J., Stupar, Robert M., Graham, Michelle A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8537376/
https://www.ncbi.nlm.nih.gov/pubmed/34681702
http://dx.doi.org/10.3390/ijms222011032
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author O’Rourke, Jamie A.
Morrisey, Michael J.
Merry, Ryan
Espina, Mary Jane
Lorenz, Aaron J.
Stupar, Robert M.
Graham, Michelle A.
author_facet O’Rourke, Jamie A.
Morrisey, Michael J.
Merry, Ryan
Espina, Mary Jane
Lorenz, Aaron J.
Stupar, Robert M.
Graham, Michelle A.
author_sort O’Rourke, Jamie A.
collection PubMed
description The soybean (Glycine max L. merr) genotype Fiskeby III is highly resistant to a multitude of abiotic stresses, including iron deficiency, incurring only mild yield loss during stress conditions. Conversely, Mandarin (Ottawa) is highly susceptible to disease and suffers severe phenotypic damage and yield loss when exposed to abiotic stresses such as iron deficiency, a major challenge to soybean production in the northern Midwestern United States. Using RNA-seq, we characterize the transcriptional response to iron deficiency in both Fiskeby III and Mandarin (Ottawa) to better understand abiotic stress tolerance. Previous work by our group identified a quantitative trait locus (QTL) on chromosome 5 associated with Fiskeby III iron efficiency, indicating Fiskeby III utilizes iron deficiency stress mechanisms not previously characterized in soybean. We targeted 10 of the potential candidate genes in the Williams 82 genome sequence associated with the QTL using virus-induced gene silencing. Coupling virus-induced gene silencing with RNA-seq, we identified a single high priority candidate gene with a significant impact on iron deficiency response pathways. Characterization of the Fiskeby III responses to iron stress and the genes underlying the chromosome 5 QTL provides novel targets for improved abiotic stress tolerance in soybean.
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spelling pubmed-85373762021-10-24 Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean O’Rourke, Jamie A. Morrisey, Michael J. Merry, Ryan Espina, Mary Jane Lorenz, Aaron J. Stupar, Robert M. Graham, Michelle A. Int J Mol Sci Article The soybean (Glycine max L. merr) genotype Fiskeby III is highly resistant to a multitude of abiotic stresses, including iron deficiency, incurring only mild yield loss during stress conditions. Conversely, Mandarin (Ottawa) is highly susceptible to disease and suffers severe phenotypic damage and yield loss when exposed to abiotic stresses such as iron deficiency, a major challenge to soybean production in the northern Midwestern United States. Using RNA-seq, we characterize the transcriptional response to iron deficiency in both Fiskeby III and Mandarin (Ottawa) to better understand abiotic stress tolerance. Previous work by our group identified a quantitative trait locus (QTL) on chromosome 5 associated with Fiskeby III iron efficiency, indicating Fiskeby III utilizes iron deficiency stress mechanisms not previously characterized in soybean. We targeted 10 of the potential candidate genes in the Williams 82 genome sequence associated with the QTL using virus-induced gene silencing. Coupling virus-induced gene silencing with RNA-seq, we identified a single high priority candidate gene with a significant impact on iron deficiency response pathways. Characterization of the Fiskeby III responses to iron stress and the genes underlying the chromosome 5 QTL provides novel targets for improved abiotic stress tolerance in soybean. MDPI 2021-10-13 /pmc/articles/PMC8537376/ /pubmed/34681702 http://dx.doi.org/10.3390/ijms222011032 Text en © 2021 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
O’Rourke, Jamie A.
Morrisey, Michael J.
Merry, Ryan
Espina, Mary Jane
Lorenz, Aaron J.
Stupar, Robert M.
Graham, Michelle A.
Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title_full Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title_fullStr Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title_full_unstemmed Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title_short Mining Fiskeby III and Mandarin (Ottawa) Expression Profiles to Understand Iron Stress Tolerant Responses in Soybean
title_sort mining fiskeby iii and mandarin (ottawa) expression profiles to understand iron stress tolerant responses in soybean
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8537376/
https://www.ncbi.nlm.nih.gov/pubmed/34681702
http://dx.doi.org/10.3390/ijms222011032
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