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Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes

Flavonoids are specialized compounds widely distributed and with diverse functions throughout the plant kingdom and with several benefits for human health. In particular, flavonols, synthesized by flavonol synthase (FLS), protect plants against UV-B radiation and are essential for male fertility in...

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Autores principales: Falcone Ferreyra, María Lorena, Casas, María Isabel, Questa, Julia Irene, Herrera, Andrea Lorena, DeBlasio, Stacy, Wang, Jing, Jackson, David, Grotewold, Erich, Casati, Paula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3360202/
https://www.ncbi.nlm.nih.gov/pubmed/22654889
http://dx.doi.org/10.3389/fpls.2012.00101
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author Falcone Ferreyra, María Lorena
Casas, María Isabel
Questa, Julia Irene
Herrera, Andrea Lorena
DeBlasio, Stacy
Wang, Jing
Jackson, David
Grotewold, Erich
Casati, Paula
author_facet Falcone Ferreyra, María Lorena
Casas, María Isabel
Questa, Julia Irene
Herrera, Andrea Lorena
DeBlasio, Stacy
Wang, Jing
Jackson, David
Grotewold, Erich
Casati, Paula
author_sort Falcone Ferreyra, María Lorena
collection PubMed
description Flavonoids are specialized compounds widely distributed and with diverse functions throughout the plant kingdom and with several benefits for human health. In particular, flavonols, synthesized by flavonol synthase (FLS), protect plants against UV-B radiation and are essential for male fertility in maize and other plants. We have recently characterized a UV-B inducible ZmFLS1, corresponding to the first to be described in monocot plants. Interestingly, the new assembly of the B73 maize genome revealed the presence of a second putative FLS gene (ZmFLS2), with very high identity with ZmFLS1. ZmFLSs expression was analyzed in different maize tissues, and by combining electrophoretic mobility shift assays and transient expression experiments, we show that both genes are direct targets of anthocyanin (C1/PL1 + R/B) and 3-deoxy flavonoid (P1) transcriptional regulators. ZmFLS expression analyses show higher levels of both transcripts in high altitude landraces than inbred lines, and both genes are regulated by UV-B radiation in all lines analyzed. Moreover, the high sequence conservation of the ZmFLS promoters between maize lines suggests that the differences observed in ZmFLS expression are due to allelic variations in the transcription factors that regulate their activities. Finally, we generated pFLS1::FLS1-RFP transgenic plants and analyzed ZmFLS1 expression in different maize tissues; we found that this enzyme is localized in the ER and the perinuclear region.
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spelling pubmed-33602022012-05-31 Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes Falcone Ferreyra, María Lorena Casas, María Isabel Questa, Julia Irene Herrera, Andrea Lorena DeBlasio, Stacy Wang, Jing Jackson, David Grotewold, Erich Casati, Paula Front Plant Sci Plant Science Flavonoids are specialized compounds widely distributed and with diverse functions throughout the plant kingdom and with several benefits for human health. In particular, flavonols, synthesized by flavonol synthase (FLS), protect plants against UV-B radiation and are essential for male fertility in maize and other plants. We have recently characterized a UV-B inducible ZmFLS1, corresponding to the first to be described in monocot plants. Interestingly, the new assembly of the B73 maize genome revealed the presence of a second putative FLS gene (ZmFLS2), with very high identity with ZmFLS1. ZmFLSs expression was analyzed in different maize tissues, and by combining electrophoretic mobility shift assays and transient expression experiments, we show that both genes are direct targets of anthocyanin (C1/PL1 + R/B) and 3-deoxy flavonoid (P1) transcriptional regulators. ZmFLS expression analyses show higher levels of both transcripts in high altitude landraces than inbred lines, and both genes are regulated by UV-B radiation in all lines analyzed. Moreover, the high sequence conservation of the ZmFLS promoters between maize lines suggests that the differences observed in ZmFLS expression are due to allelic variations in the transcription factors that regulate their activities. Finally, we generated pFLS1::FLS1-RFP transgenic plants and analyzed ZmFLS1 expression in different maize tissues; we found that this enzyme is localized in the ER and the perinuclear region. Frontiers Research Foundation 2012-05-25 /pmc/articles/PMC3360202/ /pubmed/22654889 http://dx.doi.org/10.3389/fpls.2012.00101 Text en Copyright © 2012 Falcone Ferreyra, Casas, Questa, Herrera, DeBlasio, Wang, Jackson, Grotewold and Casati. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution Non Commercial License, which permits non-commercial use, distribution, and reproduction in other forums, provided the original authors and source are credited.
spellingShingle Plant Science
Falcone Ferreyra, María Lorena
Casas, María Isabel
Questa, Julia Irene
Herrera, Andrea Lorena
DeBlasio, Stacy
Wang, Jing
Jackson, David
Grotewold, Erich
Casati, Paula
Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title_full Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title_fullStr Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title_full_unstemmed Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title_short Evolution and Expression of Tandem Duplicated Maize Flavonol Synthase Genes
title_sort evolution and expression of tandem duplicated maize flavonol synthase genes
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3360202/
https://www.ncbi.nlm.nih.gov/pubmed/22654889
http://dx.doi.org/10.3389/fpls.2012.00101
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