Cargando…

Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening

The class III peroxidases (PODs) catalyze the oxidation of several substrates coupled to the reduction of H(2)O(2) to water, and play important roles in diverse plant processes. The POD family members have been well-studied in several plant species, but little information is available on sweet peppe...

Descripción completa

Detalles Bibliográficos
Autores principales: González-Gordo, Salvador, Muñoz-Vargas, María A., Palma, José M., Corpas, Francisco J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10215649/
https://www.ncbi.nlm.nih.gov/pubmed/37237879
http://dx.doi.org/10.3390/antiox12051013
_version_ 1785048113774329856
author González-Gordo, Salvador
Muñoz-Vargas, María A.
Palma, José M.
Corpas, Francisco J.
author_facet González-Gordo, Salvador
Muñoz-Vargas, María A.
Palma, José M.
Corpas, Francisco J.
author_sort González-Gordo, Salvador
collection PubMed
description The class III peroxidases (PODs) catalyze the oxidation of several substrates coupled to the reduction of H(2)O(2) to water, and play important roles in diverse plant processes. The POD family members have been well-studied in several plant species, but little information is available on sweet pepper fruit physiology. Based on the existing pepper genome, a total of 75 CaPOD genes have been identified, but only 10 genes were found in the fruit transcriptome (RNA-Seq). The time-course expression analysis of these genes showed that two were upregulated during fruit ripening, seven were downregulated, and one gene was unaffected. Furthermore, nitric oxide (NO) treatment triggered the upregulation of two CaPOD genes whereas the others were unaffected. Non-denaturing PAGE and in-gel activity staining allowed identifying four CaPOD isozymes (CaPOD I-CaPOD IV) which were differentially modulated during ripening and by NO. In vitro analyses of green fruit samples with peroxynitrite, NO donors, and reducing agents triggered about 100% inhibition of CaPOD IV. These data support the modulation of POD at gene and activity levels, which is in agreement with the nitro-oxidative metabolism of pepper fruit during ripening, and suggest that POD IV is a target for nitration and reducing events that lead to its inhibition.
format Online
Article
Text
id pubmed-10215649
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102156492023-05-27 Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening González-Gordo, Salvador Muñoz-Vargas, María A. Palma, José M. Corpas, Francisco J. Antioxidants (Basel) Article The class III peroxidases (PODs) catalyze the oxidation of several substrates coupled to the reduction of H(2)O(2) to water, and play important roles in diverse plant processes. The POD family members have been well-studied in several plant species, but little information is available on sweet pepper fruit physiology. Based on the existing pepper genome, a total of 75 CaPOD genes have been identified, but only 10 genes were found in the fruit transcriptome (RNA-Seq). The time-course expression analysis of these genes showed that two were upregulated during fruit ripening, seven were downregulated, and one gene was unaffected. Furthermore, nitric oxide (NO) treatment triggered the upregulation of two CaPOD genes whereas the others were unaffected. Non-denaturing PAGE and in-gel activity staining allowed identifying four CaPOD isozymes (CaPOD I-CaPOD IV) which were differentially modulated during ripening and by NO. In vitro analyses of green fruit samples with peroxynitrite, NO donors, and reducing agents triggered about 100% inhibition of CaPOD IV. These data support the modulation of POD at gene and activity levels, which is in agreement with the nitro-oxidative metabolism of pepper fruit during ripening, and suggest that POD IV is a target for nitration and reducing events that lead to its inhibition. MDPI 2023-04-27 /pmc/articles/PMC10215649/ /pubmed/37237879 http://dx.doi.org/10.3390/antiox12051013 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
González-Gordo, Salvador
Muñoz-Vargas, María A.
Palma, José M.
Corpas, Francisco J.
Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title_full Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title_fullStr Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title_full_unstemmed Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title_short Class III Peroxidases (POD) in Pepper (Capsicum annuum L.): Genome-Wide Identification and Regulation during Nitric Oxide (NO)-Influenced Fruit Ripening
title_sort class iii peroxidases (pod) in pepper (capsicum annuum l.): genome-wide identification and regulation during nitric oxide (no)-influenced fruit ripening
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10215649/
https://www.ncbi.nlm.nih.gov/pubmed/37237879
http://dx.doi.org/10.3390/antiox12051013
work_keys_str_mv AT gonzalezgordosalvador classiiiperoxidasespodinpeppercapsicumannuumlgenomewideidentificationandregulationduringnitricoxidenoinfluencedfruitripening
AT munozvargasmariaa classiiiperoxidasespodinpeppercapsicumannuumlgenomewideidentificationandregulationduringnitricoxidenoinfluencedfruitripening
AT palmajosem classiiiperoxidasespodinpeppercapsicumannuumlgenomewideidentificationandregulationduringnitricoxidenoinfluencedfruitripening
AT corpasfranciscoj classiiiperoxidasespodinpeppercapsicumannuumlgenomewideidentificationandregulationduringnitricoxidenoinfluencedfruitripening