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Genomic regions that underlie soybean seed isoflavone content

Soy products contain isoflavones (genistein, daidzein, and glycitein) that display biological effects when ingested by humans and animals, these effects are species, dose and age dependent. Therefore, the content and quality of isoflavones in soybeans is a key to their biological effect. Our objecti...

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Autores principales: Meksem, K., Njiti, V. N, Banz, W. J, Iqbal, M. J, Kassem, My. M, Hyten, D. L, Yuang, J., Winters, T. A, Lightfoot, D. A
Formato: Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC79679/
https://www.ncbi.nlm.nih.gov/pubmed/12488625
http://dx.doi.org/10.1155/S1110724301000110
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author Meksem, K.
Njiti, V. N
Banz, W. J
Iqbal, M. J
Kassem, My. M
Hyten, D. L
Yuang, J.
Winters, T. A
Lightfoot, D. A
author_facet Meksem, K.
Njiti, V. N
Banz, W. J
Iqbal, M. J
Kassem, My. M
Hyten, D. L
Yuang, J.
Winters, T. A
Lightfoot, D. A
author_sort Meksem, K.
collection PubMed
description Soy products contain isoflavones (genistein, daidzein, and glycitein) that display biological effects when ingested by humans and animals, these effects are species, dose and age dependent. Therefore, the content and quality of isoflavones in soybeans is a key to their biological effect. Our objective was to identify loci that underlie isoflavone content in soybean seeds. The study involved 100 recombinant inbred lines (RIL) from the cross of ‘Essex' by ‘Forrest,' two cultivars that contrast for isoflavone content. Isoflavone content of seeds from each RIL was determined by high performance liquid chromatography (HPLC). The distribution of isoflavone content was continuous and unimodal. The heritability estimates on a line mean basis were 79% for daidzein, 22% for genistein, and 88% for glycitein. Isoflavone content of soybean seeds was compared against 150 polymorphic DNA markers in a one-way analysis of variance. Four genomic regions were found to be significantly associated with the isoflavone content of soybean seeds across both locations and years. Molecular linkage group B1 contained a major QTL underlying glycitein content (P = 0.0001, R(2) = 50.2%), linkage group N contained a QTL for glycitein (P = 0.0033, R(2) = 11.1%) and a QTL for daidzein (P = 0.0023, R(2) = 10.3%) and linkage group A1 contained a QTL for daidzein (P = 0.0081, R(2) = 9.6%). Selection for these chromosomal regions in a marker assisted selection program will allow for the manipulation of amounts and profiles of isoflavones (genistein, daidzein, and glycitein) content of soybean seeds. In addition, tightly linked markers can be used in map based cloning of genes associated with isoflavone content.
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spelling pubmed-796792002-03-12 Genomic regions that underlie soybean seed isoflavone content Meksem, K. Njiti, V. N Banz, W. J Iqbal, M. J Kassem, My. M Hyten, D. L Yuang, J. Winters, T. A Lightfoot, D. A J Biomed Biotechnol Research Article Soy products contain isoflavones (genistein, daidzein, and glycitein) that display biological effects when ingested by humans and animals, these effects are species, dose and age dependent. Therefore, the content and quality of isoflavones in soybeans is a key to their biological effect. Our objective was to identify loci that underlie isoflavone content in soybean seeds. The study involved 100 recombinant inbred lines (RIL) from the cross of ‘Essex' by ‘Forrest,' two cultivars that contrast for isoflavone content. Isoflavone content of seeds from each RIL was determined by high performance liquid chromatography (HPLC). The distribution of isoflavone content was continuous and unimodal. The heritability estimates on a line mean basis were 79% for daidzein, 22% for genistein, and 88% for glycitein. Isoflavone content of soybean seeds was compared against 150 polymorphic DNA markers in a one-way analysis of variance. Four genomic regions were found to be significantly associated with the isoflavone content of soybean seeds across both locations and years. Molecular linkage group B1 contained a major QTL underlying glycitein content (P = 0.0001, R(2) = 50.2%), linkage group N contained a QTL for glycitein (P = 0.0033, R(2) = 11.1%) and a QTL for daidzein (P = 0.0023, R(2) = 10.3%) and linkage group A1 contained a QTL for daidzein (P = 0.0081, R(2) = 9.6%). Selection for these chromosomal regions in a marker assisted selection program will allow for the manipulation of amounts and profiles of isoflavones (genistein, daidzein, and glycitein) content of soybean seeds. In addition, tightly linked markers can be used in map based cloning of genes associated with isoflavone content. Hindawi Publishing Corporation 2001 /pmc/articles/PMC79679/ /pubmed/12488625 http://dx.doi.org/10.1155/S1110724301000110 Text en Copyright © 2001, Hindawi Publishing Corporation
spellingShingle Research Article
Meksem, K.
Njiti, V. N
Banz, W. J
Iqbal, M. J
Kassem, My. M
Hyten, D. L
Yuang, J.
Winters, T. A
Lightfoot, D. A
Genomic regions that underlie soybean seed isoflavone content
title Genomic regions that underlie soybean seed isoflavone content
title_full Genomic regions that underlie soybean seed isoflavone content
title_fullStr Genomic regions that underlie soybean seed isoflavone content
title_full_unstemmed Genomic regions that underlie soybean seed isoflavone content
title_short Genomic regions that underlie soybean seed isoflavone content
title_sort genomic regions that underlie soybean seed isoflavone content
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC79679/
https://www.ncbi.nlm.nih.gov/pubmed/12488625
http://dx.doi.org/10.1155/S1110724301000110
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