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Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis

Class III plant peroxidases (Prxs) are involved in the oxidative polymerization of lignins. Zinnia elegans Jacq. Basic peroxidase (ZePrx) has been previously characterized as capable of catalyzing this reaction in vitro and the role in lignin biosynthesis of several of its Arabidopsis thaliana homol...

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Autores principales: García-Ulloa, Alba, Sanjurjo, Laura, Cimini, Sara, Encina, Antonio, Martínez-Rubio, Romina, Bouza, Rebeca, Barral, Luis, Estévez-Pérez, Graciela, Novo-Uzal, Esther, De Gara, Laura, Pomar, Federico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7333733/
https://www.ncbi.nlm.nih.gov/pubmed/32676088
http://dx.doi.org/10.3389/fpls.2020.00900
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author García-Ulloa, Alba
Sanjurjo, Laura
Cimini, Sara
Encina, Antonio
Martínez-Rubio, Romina
Bouza, Rebeca
Barral, Luis
Estévez-Pérez, Graciela
Novo-Uzal, Esther
De Gara, Laura
Pomar, Federico
author_facet García-Ulloa, Alba
Sanjurjo, Laura
Cimini, Sara
Encina, Antonio
Martínez-Rubio, Romina
Bouza, Rebeca
Barral, Luis
Estévez-Pérez, Graciela
Novo-Uzal, Esther
De Gara, Laura
Pomar, Federico
author_sort García-Ulloa, Alba
collection PubMed
description Class III plant peroxidases (Prxs) are involved in the oxidative polymerization of lignins. Zinnia elegans Jacq. Basic peroxidase (ZePrx) has been previously characterized as capable of catalyzing this reaction in vitro and the role in lignin biosynthesis of several of its Arabidopsis thaliana homologous has been previously confirmed. In the present work, ZePrx was overexpressed in Nicotiana tabacum to further characterize its function in planta with particular attention to its involvement in lignin biosynthesis. Since Prxs are known to alter ROS levels by using them as electron acceptor or producing them in their catalytic activity, the impact of this overexpression in redox homeostasis was studied by analyzing the metabolites and enzymes of the ascorbate-glutathione cycle. In relation to the modification induced by ZePrx overexpression in lignin composition and cellular metabolism, the carbohydrate composition of the cell wall as well as overall gene expression through RNA-Seq were analyzed. The obtained results indicate that the overexpression of ZePrx caused an increase in syringyl lignin in cell wall stems, suggesting that ZePrx is relevant for the oxidation of sinapyl alcohol during lignin biosynthesis, coherently with its S-peroxidase nature. The increase in the glucose content of the cell wall and the reduction of the expression of several genes involved in secondary cell wall biosynthesis suggests the occurrence of a possible compensatory response to maintain cell wall properties. The perturbation of cellular redox homeostasis occurring as a consequence of ZePrx overexpression was kept under control by an increase in APX activity and a reduction in ascorbate redox state. In conclusion, our results confirm the role of ZePrx in lignin biosynthesis and highlight that its activity alters cellular pathways putatively aimed at maintaining redox homeostasis.
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spelling pubmed-73337332020-07-15 Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis García-Ulloa, Alba Sanjurjo, Laura Cimini, Sara Encina, Antonio Martínez-Rubio, Romina Bouza, Rebeca Barral, Luis Estévez-Pérez, Graciela Novo-Uzal, Esther De Gara, Laura Pomar, Federico Front Plant Sci Plant Science Class III plant peroxidases (Prxs) are involved in the oxidative polymerization of lignins. Zinnia elegans Jacq. Basic peroxidase (ZePrx) has been previously characterized as capable of catalyzing this reaction in vitro and the role in lignin biosynthesis of several of its Arabidopsis thaliana homologous has been previously confirmed. In the present work, ZePrx was overexpressed in Nicotiana tabacum to further characterize its function in planta with particular attention to its involvement in lignin biosynthesis. Since Prxs are known to alter ROS levels by using them as electron acceptor or producing them in their catalytic activity, the impact of this overexpression in redox homeostasis was studied by analyzing the metabolites and enzymes of the ascorbate-glutathione cycle. In relation to the modification induced by ZePrx overexpression in lignin composition and cellular metabolism, the carbohydrate composition of the cell wall as well as overall gene expression through RNA-Seq were analyzed. The obtained results indicate that the overexpression of ZePrx caused an increase in syringyl lignin in cell wall stems, suggesting that ZePrx is relevant for the oxidation of sinapyl alcohol during lignin biosynthesis, coherently with its S-peroxidase nature. The increase in the glucose content of the cell wall and the reduction of the expression of several genes involved in secondary cell wall biosynthesis suggests the occurrence of a possible compensatory response to maintain cell wall properties. The perturbation of cellular redox homeostasis occurring as a consequence of ZePrx overexpression was kept under control by an increase in APX activity and a reduction in ascorbate redox state. In conclusion, our results confirm the role of ZePrx in lignin biosynthesis and highlight that its activity alters cellular pathways putatively aimed at maintaining redox homeostasis. Frontiers Media S.A. 2020-06-26 /pmc/articles/PMC7333733/ /pubmed/32676088 http://dx.doi.org/10.3389/fpls.2020.00900 Text en Copyright © 2020 García-Ulloa, Sanjurjo, Cimini, Encina, Martínez-Rubio, Bouza, Barral, Estévez-Pérez, Novo-Uzal, De Gara and Pomar. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
García-Ulloa, Alba
Sanjurjo, Laura
Cimini, Sara
Encina, Antonio
Martínez-Rubio, Romina
Bouza, Rebeca
Barral, Luis
Estévez-Pérez, Graciela
Novo-Uzal, Esther
De Gara, Laura
Pomar, Federico
Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title_full Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title_fullStr Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title_full_unstemmed Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title_short Overexpression of ZePrx in Nicotiana tabacum Affects Lignin Biosynthesis Without Altering Redox Homeostasis
title_sort overexpression of zeprx in nicotiana tabacum affects lignin biosynthesis without altering redox homeostasis
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7333733/
https://www.ncbi.nlm.nih.gov/pubmed/32676088
http://dx.doi.org/10.3389/fpls.2020.00900
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