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Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco

A genetic program that in sunflower seeds is activated by Heat Shock transcription Factor A9 (HaHSFA9) has been analyzed in transgenic tobacco seedlings. The ectopic overexpression of the HSFA9 program protected photosynthetic membranes, which resisted extreme dehydration and oxidative stress condit...

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Autores principales: Almoguera, Concepción, Prieto-Dapena, Pilar, Personat, José-María, Tejedor-Cano, Javier, Lindahl, Marika, Diaz-Espejo, Antonio, Jordano, Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3515515/
https://www.ncbi.nlm.nih.gov/pubmed/23227265
http://dx.doi.org/10.1371/journal.pone.0051443
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author Almoguera, Concepción
Prieto-Dapena, Pilar
Personat, José-María
Tejedor-Cano, Javier
Lindahl, Marika
Diaz-Espejo, Antonio
Jordano, Juan
author_facet Almoguera, Concepción
Prieto-Dapena, Pilar
Personat, José-María
Tejedor-Cano, Javier
Lindahl, Marika
Diaz-Espejo, Antonio
Jordano, Juan
author_sort Almoguera, Concepción
collection PubMed
description A genetic program that in sunflower seeds is activated by Heat Shock transcription Factor A9 (HaHSFA9) has been analyzed in transgenic tobacco seedlings. The ectopic overexpression of the HSFA9 program protected photosynthetic membranes, which resisted extreme dehydration and oxidative stress conditions. In contrast, heat acclimation of seedlings induced thermotolerance but not resistance to the harsh stress conditions employed. The HSFA9 program was found to include the expression of plastidial small Heat Shock Proteins that accumulate only at lower abundance in heat-stressed vegetative organs. Photosystem II (PSII) maximum quantum yield was higher for transgenic seedlings than for non-transgenic seedlings, after either stress treatment. Furthermore, protection of both PSII and Photosystem I (PSI) membrane protein complexes was observed in the transgenic seedlings, leading to their survival after the stress treatments. It was also shown that the plastidial D1 protein, a labile component of the PSII reaction center, and the PSI core protein PsaB were shielded from oxidative damage and degradation. We infer that natural expression of the HSFA9 program during embryogenesis may protect seed pro-plastids from developmental desiccation.
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spelling pubmed-35155152012-12-07 Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco Almoguera, Concepción Prieto-Dapena, Pilar Personat, José-María Tejedor-Cano, Javier Lindahl, Marika Diaz-Espejo, Antonio Jordano, Juan PLoS One Research Article A genetic program that in sunflower seeds is activated by Heat Shock transcription Factor A9 (HaHSFA9) has been analyzed in transgenic tobacco seedlings. The ectopic overexpression of the HSFA9 program protected photosynthetic membranes, which resisted extreme dehydration and oxidative stress conditions. In contrast, heat acclimation of seedlings induced thermotolerance but not resistance to the harsh stress conditions employed. The HSFA9 program was found to include the expression of plastidial small Heat Shock Proteins that accumulate only at lower abundance in heat-stressed vegetative organs. Photosystem II (PSII) maximum quantum yield was higher for transgenic seedlings than for non-transgenic seedlings, after either stress treatment. Furthermore, protection of both PSII and Photosystem I (PSI) membrane protein complexes was observed in the transgenic seedlings, leading to their survival after the stress treatments. It was also shown that the plastidial D1 protein, a labile component of the PSII reaction center, and the PSI core protein PsaB were shielded from oxidative damage and degradation. We infer that natural expression of the HSFA9 program during embryogenesis may protect seed pro-plastids from developmental desiccation. Public Library of Science 2012-12-05 /pmc/articles/PMC3515515/ /pubmed/23227265 http://dx.doi.org/10.1371/journal.pone.0051443 Text en © 2012 Almoguera 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
Almoguera, Concepción
Prieto-Dapena, Pilar
Personat, José-María
Tejedor-Cano, Javier
Lindahl, Marika
Diaz-Espejo, Antonio
Jordano, Juan
Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title_full Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title_fullStr Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title_full_unstemmed Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title_short Protection of the Photosynthetic Apparatus from Extreme Dehydration and Oxidative Stress in Seedlings of Transgenic Tobacco
title_sort protection of the photosynthetic apparatus from extreme dehydration and oxidative stress in seedlings of transgenic tobacco
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3515515/
https://www.ncbi.nlm.nih.gov/pubmed/23227265
http://dx.doi.org/10.1371/journal.pone.0051443
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