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Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species

Ascorbate peroxidases (APXs) are heme peroxidases involved in the control of hydrogen peroxide levels and signal transduction pathways related to development and stress responses. Here, a total of 238 APX, 30 APX-related (APX-R), and 34 APX-like (APX-L) genes were identified from 24 species from the...

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Autores principales: Jardim-Messeder, Douglas, Caverzan, Andreia, Bastos, Gabriel Afonso, Galhego, Vanessa, de Souza-Vieira, Ygor, Lazzarotto, Fernanda, Felix-Mendes, Esther, Lavaquial, Lucas, Nicomedes, José, Margis-Pinheiro, Márcia, Sachetto-Martins, Gilberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747090/
https://www.ncbi.nlm.nih.gov/pubmed/36512713
http://dx.doi.org/10.1590/1678-4685-GMB-2022-0153
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author Jardim-Messeder, Douglas
Caverzan, Andreia
Bastos, Gabriel Afonso
Galhego, Vanessa
de Souza-Vieira, Ygor
Lazzarotto, Fernanda
Felix-Mendes, Esther
Lavaquial, Lucas
Nicomedes, José
Margis-Pinheiro, Márcia
Sachetto-Martins, Gilberto
author_facet Jardim-Messeder, Douglas
Caverzan, Andreia
Bastos, Gabriel Afonso
Galhego, Vanessa
de Souza-Vieira, Ygor
Lazzarotto, Fernanda
Felix-Mendes, Esther
Lavaquial, Lucas
Nicomedes, José
Margis-Pinheiro, Márcia
Sachetto-Martins, Gilberto
author_sort Jardim-Messeder, Douglas
collection PubMed
description Ascorbate peroxidases (APXs) are heme peroxidases involved in the control of hydrogen peroxide levels and signal transduction pathways related to development and stress responses. Here, a total of 238 APX, 30 APX-related (APX-R), and 34 APX-like (APX-L) genes were identified from 24 species from the Poaceae family. Phylogenetic analysis of APX indicated five distinct clades, equivalent to cytosolic (cAPX), peroxisomal (pAPX), mitochondrial (mitAPX), stromal (sAPX), and thylakoidal (tAPX) isoforms. Duplication events contributed to the expansion of this family and the divergence times. Different from other APX isoforms, the emergence of Poaceae mitAPXs occurred independently after eudicot and monocot divergence. Our results showed that the constitutive silencing of mitAPX genes is not viable in rice plants, suggesting that these isoforms are essential for rice regeneration or development. We also obtained rice plants silenced individually to sAPX isoforms, demonstrating that, different to plants double silenced to both sAPX and tAPX or single silenced to tAPX previously obtained, these plants do not show changes in the total APX activity and hydrogen peroxide content in the shoot. Among rice plants silenced to different isoforms, plants silenced to cAPX showed a higher decrease in total APX activity and an increase in hydrogen peroxide levels. These results suggest that the cAPXs are the main isoforms responsible for regulating hydrogen peroxide levels in the cell, whereas in the chloroplast, this role is provided mainly by the tAPX isoform. In addition to broadening our understanding of the core components of the antioxidant defense in Poaceae species, the present study also provides a platform for their functional characterization.
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spelling pubmed-97470902022-12-20 Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species Jardim-Messeder, Douglas Caverzan, Andreia Bastos, Gabriel Afonso Galhego, Vanessa de Souza-Vieira, Ygor Lazzarotto, Fernanda Felix-Mendes, Esther Lavaquial, Lucas Nicomedes, José Margis-Pinheiro, Márcia Sachetto-Martins, Gilberto Genet Mol Biol Plant Molecular Genetics - Special Issue Ascorbate peroxidases (APXs) are heme peroxidases involved in the control of hydrogen peroxide levels and signal transduction pathways related to development and stress responses. Here, a total of 238 APX, 30 APX-related (APX-R), and 34 APX-like (APX-L) genes were identified from 24 species from the Poaceae family. Phylogenetic analysis of APX indicated five distinct clades, equivalent to cytosolic (cAPX), peroxisomal (pAPX), mitochondrial (mitAPX), stromal (sAPX), and thylakoidal (tAPX) isoforms. Duplication events contributed to the expansion of this family and the divergence times. Different from other APX isoforms, the emergence of Poaceae mitAPXs occurred independently after eudicot and monocot divergence. Our results showed that the constitutive silencing of mitAPX genes is not viable in rice plants, suggesting that these isoforms are essential for rice regeneration or development. We also obtained rice plants silenced individually to sAPX isoforms, demonstrating that, different to plants double silenced to both sAPX and tAPX or single silenced to tAPX previously obtained, these plants do not show changes in the total APX activity and hydrogen peroxide content in the shoot. Among rice plants silenced to different isoforms, plants silenced to cAPX showed a higher decrease in total APX activity and an increase in hydrogen peroxide levels. These results suggest that the cAPXs are the main isoforms responsible for regulating hydrogen peroxide levels in the cell, whereas in the chloroplast, this role is provided mainly by the tAPX isoform. In addition to broadening our understanding of the core components of the antioxidant defense in Poaceae species, the present study also provides a platform for their functional characterization. Sociedade Brasileira de Genética 2022-12-09 /pmc/articles/PMC9747090/ /pubmed/36512713 http://dx.doi.org/10.1590/1678-4685-GMB-2022-0153 Text en https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (type CC-BY), which permits unrestricted use, istribution and reproduction in any medium, provided the original article is properly cited.
spellingShingle Plant Molecular Genetics - Special Issue
Jardim-Messeder, Douglas
Caverzan, Andreia
Bastos, Gabriel Afonso
Galhego, Vanessa
de Souza-Vieira, Ygor
Lazzarotto, Fernanda
Felix-Mendes, Esther
Lavaquial, Lucas
Nicomedes, José
Margis-Pinheiro, Márcia
Sachetto-Martins, Gilberto
Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title_full Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title_fullStr Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title_full_unstemmed Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title_short Genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (APX) family in Poaceae species
title_sort genome-wide, evolutionary, and functional analyses of ascorbate peroxidase (apx) family in poaceae species
topic Plant Molecular Genetics - Special Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747090/
https://www.ncbi.nlm.nih.gov/pubmed/36512713
http://dx.doi.org/10.1590/1678-4685-GMB-2022-0153
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