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The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase

During the last 20 years multiple roles of the nitric oxide gas (•NO) have been uncovered in plant growth, development and many physiological processes. In seed plants the enzymatic synthesis of •NO is mediated by a nitric oxide synthase (NOS)-like activity performed by a still unknown enzyme(s) and...

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Autores principales: Medina-Andrés, Rigoberto, Solano-Peralta, Alejandro, Saucedo-Vázquez, Juan Pablo, Napsucialy-Mendivil, Selene, Pimentel-Cabrera, Jaime Arturo, Sosa-Torres, Martha Elena, Dubrovsky, Joseph G., Lira-Ruan, Verónica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4351199/
https://www.ncbi.nlm.nih.gov/pubmed/25742644
http://dx.doi.org/10.1371/journal.pone.0119400
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author Medina-Andrés, Rigoberto
Solano-Peralta, Alejandro
Saucedo-Vázquez, Juan Pablo
Napsucialy-Mendivil, Selene
Pimentel-Cabrera, Jaime Arturo
Sosa-Torres, Martha Elena
Dubrovsky, Joseph G.
Lira-Ruan, Verónica
author_facet Medina-Andrés, Rigoberto
Solano-Peralta, Alejandro
Saucedo-Vázquez, Juan Pablo
Napsucialy-Mendivil, Selene
Pimentel-Cabrera, Jaime Arturo
Sosa-Torres, Martha Elena
Dubrovsky, Joseph G.
Lira-Ruan, Verónica
author_sort Medina-Andrés, Rigoberto
collection PubMed
description During the last 20 years multiple roles of the nitric oxide gas (•NO) have been uncovered in plant growth, development and many physiological processes. In seed plants the enzymatic synthesis of •NO is mediated by a nitric oxide synthase (NOS)-like activity performed by a still unknown enzyme(s) and nitrate reductase (NR). In green algae the •NO production has been linked only to NR activity, although a NOS gene was reported for Ostreococcus tauri and O. lucimarinus, no other Viridiplantae species has such gene. As there is no information about •NO synthesis neither for non-vascular plants nor for non-seed vascular plants, the interesting question regarding the evolution of the enzymatic •NO production systems during land plant natural history remains open. To address this issue the endogenous •NO production by protonema was demonstrated using Electron Paramagnetic Resonance (EPR). The •NO signal was almost eliminated in plants treated with sodium tungstate, which also reduced the NR activity, demonstrating that in P. patens NR activity is the main source for •NO production. The analysis with confocal laser scanning microscopy (CLSM) confirmed endogenous NO production and showed that •NO signal is accumulated in the cytoplasm of protonema cells. The results presented here show for the first time the •NO production in a non-vascular plant and demonstrate that the NR-dependent enzymatic synthesis of •NO is common for embryophytes and green algae.
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spelling pubmed-43511992015-03-17 The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase Medina-Andrés, Rigoberto Solano-Peralta, Alejandro Saucedo-Vázquez, Juan Pablo Napsucialy-Mendivil, Selene Pimentel-Cabrera, Jaime Arturo Sosa-Torres, Martha Elena Dubrovsky, Joseph G. Lira-Ruan, Verónica PLoS One Research Article During the last 20 years multiple roles of the nitric oxide gas (•NO) have been uncovered in plant growth, development and many physiological processes. In seed plants the enzymatic synthesis of •NO is mediated by a nitric oxide synthase (NOS)-like activity performed by a still unknown enzyme(s) and nitrate reductase (NR). In green algae the •NO production has been linked only to NR activity, although a NOS gene was reported for Ostreococcus tauri and O. lucimarinus, no other Viridiplantae species has such gene. As there is no information about •NO synthesis neither for non-vascular plants nor for non-seed vascular plants, the interesting question regarding the evolution of the enzymatic •NO production systems during land plant natural history remains open. To address this issue the endogenous •NO production by protonema was demonstrated using Electron Paramagnetic Resonance (EPR). The •NO signal was almost eliminated in plants treated with sodium tungstate, which also reduced the NR activity, demonstrating that in P. patens NR activity is the main source for •NO production. The analysis with confocal laser scanning microscopy (CLSM) confirmed endogenous NO production and showed that •NO signal is accumulated in the cytoplasm of protonema cells. The results presented here show for the first time the •NO production in a non-vascular plant and demonstrate that the NR-dependent enzymatic synthesis of •NO is common for embryophytes and green algae. Public Library of Science 2015-03-05 /pmc/articles/PMC4351199/ /pubmed/25742644 http://dx.doi.org/10.1371/journal.pone.0119400 Text en © 2015 Medina-Andrés et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Medina-Andrés, Rigoberto
Solano-Peralta, Alejandro
Saucedo-Vázquez, Juan Pablo
Napsucialy-Mendivil, Selene
Pimentel-Cabrera, Jaime Arturo
Sosa-Torres, Martha Elena
Dubrovsky, Joseph G.
Lira-Ruan, Verónica
The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title_full The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title_fullStr The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title_full_unstemmed The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title_short The Nitric Oxide Production in the Moss Physcomitrella patens Is Mediated by Nitrate Reductase
title_sort nitric oxide production in the moss physcomitrella patens is mediated by nitrate reductase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4351199/
https://www.ncbi.nlm.nih.gov/pubmed/25742644
http://dx.doi.org/10.1371/journal.pone.0119400
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