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Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation

Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As, upon freezing temperatures, H. rhodopensis desiccates, the taxon is proposed to survive low temperature stress using its desiccation tolerance mechanisms. To reveal the validity of this hypothesis,...

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Autores principales: Mihailova, Gergana, Christov, Nikolai K., Sárvári, Éva, Solti, Ádám, Hembrom, Richard, Solymosi, Katalin, Keresztes, Áron, Velitchkova, Maya, Popova, Antoaneta V., Simova-Stoilova, Lyudmila, Todorovska, Elena, Georgieva, Katya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460447/
https://www.ncbi.nlm.nih.gov/pubmed/36079568
http://dx.doi.org/10.3390/plants11172185
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author Mihailova, Gergana
Christov, Nikolai K.
Sárvári, Éva
Solti, Ádám
Hembrom, Richard
Solymosi, Katalin
Keresztes, Áron
Velitchkova, Maya
Popova, Antoaneta V.
Simova-Stoilova, Lyudmila
Todorovska, Elena
Georgieva, Katya
author_facet Mihailova, Gergana
Christov, Nikolai K.
Sárvári, Éva
Solti, Ádám
Hembrom, Richard
Solymosi, Katalin
Keresztes, Áron
Velitchkova, Maya
Popova, Antoaneta V.
Simova-Stoilova, Lyudmila
Todorovska, Elena
Georgieva, Katya
author_sort Mihailova, Gergana
collection PubMed
description Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As, upon freezing temperatures, H. rhodopensis desiccates, the taxon is proposed to survive low temperature stress using its desiccation tolerance mechanisms. To reveal the validity of this hypothesis, we analyzed the structural alterations and organization of photosynthetic apparatus during the first hours of recovery after drought- and freezing-induced desiccation. The dynamics of the ultrastructure remodeling in the mesophyll cells and the restoration of the thylakoid membranes shared similarities independent of the reason for desiccation. Among the most obvious changes in thylakoid complexes, the proportion of the PSI-LHCII complex strongly increased around 70% relative water content (RWC), whereas the proportion of Lhc monomers decreased from the beginning of rehydration. We identified enhanced levels of cyt b(6)f complex proteins that contributed to the enhanced electron flow. The high abundance of proteins related to excitation energy dissipation, PsbS, Lhcb5, Lhcb6 and ELIPs, together with the increased content of dehydrins contributed to the preservation of cellular integrity. ELIP expression was maintained at high levels up to 9 h into recovery. Although the recovery processes from drought- and freezing-induced desiccation were found to be similar in progress and time scale, slight variations indicate that they are not identical.
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spelling pubmed-94604472022-09-10 Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation Mihailova, Gergana Christov, Nikolai K. Sárvári, Éva Solti, Ádám Hembrom, Richard Solymosi, Katalin Keresztes, Áron Velitchkova, Maya Popova, Antoaneta V. Simova-Stoilova, Lyudmila Todorovska, Elena Georgieva, Katya Plants (Basel) Article Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As, upon freezing temperatures, H. rhodopensis desiccates, the taxon is proposed to survive low temperature stress using its desiccation tolerance mechanisms. To reveal the validity of this hypothesis, we analyzed the structural alterations and organization of photosynthetic apparatus during the first hours of recovery after drought- and freezing-induced desiccation. The dynamics of the ultrastructure remodeling in the mesophyll cells and the restoration of the thylakoid membranes shared similarities independent of the reason for desiccation. Among the most obvious changes in thylakoid complexes, the proportion of the PSI-LHCII complex strongly increased around 70% relative water content (RWC), whereas the proportion of Lhc monomers decreased from the beginning of rehydration. We identified enhanced levels of cyt b(6)f complex proteins that contributed to the enhanced electron flow. The high abundance of proteins related to excitation energy dissipation, PsbS, Lhcb5, Lhcb6 and ELIPs, together with the increased content of dehydrins contributed to the preservation of cellular integrity. ELIP expression was maintained at high levels up to 9 h into recovery. Although the recovery processes from drought- and freezing-induced desiccation were found to be similar in progress and time scale, slight variations indicate that they are not identical. MDPI 2022-08-23 /pmc/articles/PMC9460447/ /pubmed/36079568 http://dx.doi.org/10.3390/plants11172185 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
Mihailova, Gergana
Christov, Nikolai K.
Sárvári, Éva
Solti, Ádám
Hembrom, Richard
Solymosi, Katalin
Keresztes, Áron
Velitchkova, Maya
Popova, Antoaneta V.
Simova-Stoilova, Lyudmila
Todorovska, Elena
Georgieva, Katya
Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title_full Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title_fullStr Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title_full_unstemmed Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title_short Reactivation of the Photosynthetic Apparatus of Resurrection Plant Haberlea rhodopensis during the Early Phase of Recovery from Drought- and Freezing-Induced Desiccation
title_sort reactivation of the photosynthetic apparatus of resurrection plant haberlea rhodopensis during the early phase of recovery from drought- and freezing-induced desiccation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460447/
https://www.ncbi.nlm.nih.gov/pubmed/36079568
http://dx.doi.org/10.3390/plants11172185
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