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Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis

Biogenesis of the secondary cell wall in trees involves the massive biosynthesis of the phenylalanine-derived polymer lignin. Arogenate dehydratase (ADT) catalyzes the last, and rate-limiting, step of the main pathway for phenylalanine biosynthesis. In this study, we found that transcript levels for...

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Autores principales: El-Azaz, Jorge, de la Torre, Fernando, Pascual, María Belén, Debille, Sandrine, Canlet, Francis, Harvengt, Luc, Trontin, Jean-François, Ávila, Concepción, Cánovas, Francisco M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260716/
https://www.ncbi.nlm.nih.gov/pubmed/32090267
http://dx.doi.org/10.1093/jxb/eraa099
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author El-Azaz, Jorge
de la Torre, Fernando
Pascual, María Belén
Debille, Sandrine
Canlet, Francis
Harvengt, Luc
Trontin, Jean-François
Ávila, Concepción
Cánovas, Francisco M
author_facet El-Azaz, Jorge
de la Torre, Fernando
Pascual, María Belén
Debille, Sandrine
Canlet, Francis
Harvengt, Luc
Trontin, Jean-François
Ávila, Concepción
Cánovas, Francisco M
author_sort El-Azaz, Jorge
collection PubMed
description Biogenesis of the secondary cell wall in trees involves the massive biosynthesis of the phenylalanine-derived polymer lignin. Arogenate dehydratase (ADT) catalyzes the last, and rate-limiting, step of the main pathway for phenylalanine biosynthesis. In this study, we found that transcript levels for several members of the large ADT gene family, including ADT-A and ADT-D, were enhanced in compression wood of maritime pine, a xylem tissue enriched in lignin. Transcriptomic analysis of maritime pine silenced for PpMYB8 revealed that this gene plays a critical role in coordinating the deposition of lignin with the biosynthesis of phenylalanine. Specifically, it was found that ADT-A and ADT-D were strongly down-regulated in PpMYB8-silenced plants and that they were transcriptionally regulated through direct interaction of this transcription factor with regulatory elements present in their promoters. Another transcription factor, PpHY5, exhibited an expression profile opposite to that of PpMYB8 and also interacted with specific regulatory elements of ADT-A and ADT-D genes, suggesting that it is involved in transcriptional regulation of phenylalanine biosynthesis. Taken together, our results reveal that PpMYB8 and PpHY5 are involved in the control of phenylalanine formation and its metabolic channeling for lignin biosynthesis and deposition during wood formation in maritime pine.
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spelling pubmed-72607162020-06-03 Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis El-Azaz, Jorge de la Torre, Fernando Pascual, María Belén Debille, Sandrine Canlet, Francis Harvengt, Luc Trontin, Jean-François Ávila, Concepción Cánovas, Francisco M J Exp Bot Research Papers Biogenesis of the secondary cell wall in trees involves the massive biosynthesis of the phenylalanine-derived polymer lignin. Arogenate dehydratase (ADT) catalyzes the last, and rate-limiting, step of the main pathway for phenylalanine biosynthesis. In this study, we found that transcript levels for several members of the large ADT gene family, including ADT-A and ADT-D, were enhanced in compression wood of maritime pine, a xylem tissue enriched in lignin. Transcriptomic analysis of maritime pine silenced for PpMYB8 revealed that this gene plays a critical role in coordinating the deposition of lignin with the biosynthesis of phenylalanine. Specifically, it was found that ADT-A and ADT-D were strongly down-regulated in PpMYB8-silenced plants and that they were transcriptionally regulated through direct interaction of this transcription factor with regulatory elements present in their promoters. Another transcription factor, PpHY5, exhibited an expression profile opposite to that of PpMYB8 and also interacted with specific regulatory elements of ADT-A and ADT-D genes, suggesting that it is involved in transcriptional regulation of phenylalanine biosynthesis. Taken together, our results reveal that PpMYB8 and PpHY5 are involved in the control of phenylalanine formation and its metabolic channeling for lignin biosynthesis and deposition during wood formation in maritime pine. Oxford University Press 2020-05-30 2020-02-24 /pmc/articles/PMC7260716/ /pubmed/32090267 http://dx.doi.org/10.1093/jxb/eraa099 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
El-Azaz, Jorge
de la Torre, Fernando
Pascual, María Belén
Debille, Sandrine
Canlet, Francis
Harvengt, Luc
Trontin, Jean-François
Ávila, Concepción
Cánovas, Francisco M
Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title_full Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title_fullStr Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title_full_unstemmed Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title_short Transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
title_sort transcriptional analysis of arogenate dehydratase genes identifies a link between phenylalanine biosynthesis and lignin biosynthesis
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260716/
https://www.ncbi.nlm.nih.gov/pubmed/32090267
http://dx.doi.org/10.1093/jxb/eraa099
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