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Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley

Spectral quality, intensity and period of light modify many regulatory and stress signaling pathways in plants. Both nitrate and sulfate assimilations must be synchronized with photosynthesis, which ensures energy and reductants for these pathways. However, photosynthesis is also a source of reactiv...

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Autores principales: Balogh, Eszter, Kalapos, Balázs, Ahres, Mohamed, Boldizsár, Ákos, Gierczik, Krisztián, Gulyás, Zsolt, Gyugos, Mónika, Szalai, Gabriella, Novák, Aliz, Kocsy, Gábor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9267158/
https://www.ncbi.nlm.nih.gov/pubmed/35806480
http://dx.doi.org/10.3390/ijms23137479
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author Balogh, Eszter
Kalapos, Balázs
Ahres, Mohamed
Boldizsár, Ákos
Gierczik, Krisztián
Gulyás, Zsolt
Gyugos, Mónika
Szalai, Gabriella
Novák, Aliz
Kocsy, Gábor
author_facet Balogh, Eszter
Kalapos, Balázs
Ahres, Mohamed
Boldizsár, Ákos
Gierczik, Krisztián
Gulyás, Zsolt
Gyugos, Mónika
Szalai, Gabriella
Novák, Aliz
Kocsy, Gábor
author_sort Balogh, Eszter
collection PubMed
description Spectral quality, intensity and period of light modify many regulatory and stress signaling pathways in plants. Both nitrate and sulfate assimilations must be synchronized with photosynthesis, which ensures energy and reductants for these pathways. However, photosynthesis is also a source of reactive oxygen species, whose levels are controlled by glutathione and other antioxidants. In this study, we investigated the effect of supplemental far-red (735 nm) and blue (450 nm) lights on the diurnal expression of the genes related to photoreceptors, the circadian clock, nitrate reduction, glutathione metabolism and various antioxidants in barley. The maximum expression of the investigated four photoreceptor and three clock-associated genes during the light period was followed by the peaking of the transcripts of the three redox-responsive transcription factors during the dark phase, while most of the nitrate and sulfate reduction, glutathione metabolism and antioxidant-enzyme-related genes exhibited high expression during light exposure in plants grown in light/dark cycles for two days. These oscillations changed or disappeared in constant white light during the subsequent two days. Supplemental far-red light induced the activation of most of the studied genes, while supplemental blue light did not affect or inhibited them during light/dark cycles. However, in constant light, several genes exhibited greater expression in blue light than in white and far-red lights. Based on a correlation analysis of the gene expression data, we propose a major role of far-red light in the coordinated transcriptional adjustment of nitrate reduction, glutathione metabolism and antioxidant enzymes to changes of the light spectrum.
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spelling pubmed-92671582022-07-09 Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley Balogh, Eszter Kalapos, Balázs Ahres, Mohamed Boldizsár, Ákos Gierczik, Krisztián Gulyás, Zsolt Gyugos, Mónika Szalai, Gabriella Novák, Aliz Kocsy, Gábor Int J Mol Sci Article Spectral quality, intensity and period of light modify many regulatory and stress signaling pathways in plants. Both nitrate and sulfate assimilations must be synchronized with photosynthesis, which ensures energy and reductants for these pathways. However, photosynthesis is also a source of reactive oxygen species, whose levels are controlled by glutathione and other antioxidants. In this study, we investigated the effect of supplemental far-red (735 nm) and blue (450 nm) lights on the diurnal expression of the genes related to photoreceptors, the circadian clock, nitrate reduction, glutathione metabolism and various antioxidants in barley. The maximum expression of the investigated four photoreceptor and three clock-associated genes during the light period was followed by the peaking of the transcripts of the three redox-responsive transcription factors during the dark phase, while most of the nitrate and sulfate reduction, glutathione metabolism and antioxidant-enzyme-related genes exhibited high expression during light exposure in plants grown in light/dark cycles for two days. These oscillations changed or disappeared in constant white light during the subsequent two days. Supplemental far-red light induced the activation of most of the studied genes, while supplemental blue light did not affect or inhibited them during light/dark cycles. However, in constant light, several genes exhibited greater expression in blue light than in white and far-red lights. Based on a correlation analysis of the gene expression data, we propose a major role of far-red light in the coordinated transcriptional adjustment of nitrate reduction, glutathione metabolism and antioxidant enzymes to changes of the light spectrum. MDPI 2022-07-05 /pmc/articles/PMC9267158/ /pubmed/35806480 http://dx.doi.org/10.3390/ijms23137479 Text en © 2022 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
Balogh, Eszter
Kalapos, Balázs
Ahres, Mohamed
Boldizsár, Ákos
Gierczik, Krisztián
Gulyás, Zsolt
Gyugos, Mónika
Szalai, Gabriella
Novák, Aliz
Kocsy, Gábor
Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title_full Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title_fullStr Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title_full_unstemmed Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title_short Far-Red Light Coordinates the Diurnal Changes in the Transcripts Related to Nitrate Reduction, Glutathione Metabolism and Antioxidant Enzymes in Barley
title_sort far-red light coordinates the diurnal changes in the transcripts related to nitrate reduction, glutathione metabolism and antioxidant enzymes in barley
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9267158/
https://www.ncbi.nlm.nih.gov/pubmed/35806480
http://dx.doi.org/10.3390/ijms23137479
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