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The chances in the redox priming of nondormant recalcitrant seeds by spermidine

The problems posed by seed sensitivity to desiccation and aging have motivated the development of various techniques for mitigating their detrimental effects. The redox priming of seeds in antioxidant solution to improve their postharvest performance is one of the approaches. Spermidine (Spd) was te...

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Autores principales: Fuchs, Hanna, Plitta-Michalak, Beata P, Małecka, Arleta, Ciszewska, Liliana, Sikorski, Łukasz, Staszak, Aleksandra M, Michalak, Marcin, Ratajczak, Ewelina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335849/
https://www.ncbi.nlm.nih.gov/pubmed/36943301
http://dx.doi.org/10.1093/treephys/tpad036
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author Fuchs, Hanna
Plitta-Michalak, Beata P
Małecka, Arleta
Ciszewska, Liliana
Sikorski, Łukasz
Staszak, Aleksandra M
Michalak, Marcin
Ratajczak, Ewelina
author_facet Fuchs, Hanna
Plitta-Michalak, Beata P
Małecka, Arleta
Ciszewska, Liliana
Sikorski, Łukasz
Staszak, Aleksandra M
Michalak, Marcin
Ratajczak, Ewelina
author_sort Fuchs, Hanna
collection PubMed
description The problems posed by seed sensitivity to desiccation and aging have motivated the development of various techniques for mitigating their detrimental effects. The redox priming of seeds in antioxidant solution to improve their postharvest performance is one of the approaches. Spermidine (Spd) was tested as an invigorating solution on nondormant recalcitrant (desiccation-sensitive) seeds of the silver maple (Acer saccharinum L.). The treatment resulted in an 8–10% increase in germination capacity in seeds subjected to mild and severe desiccation, while in aged seeds stored for 6 months, no significant change was observed. The cellular redox milieu, genetic stability, mitochondrial structure and function were investigated to provide information about the cellular targets of Spd activity. Spermidine improved the antioxidative capacity, especially the activity of catalase, and cellular membrane stability, protected genome integrity from oxidative damage and increased the efficiency of mitochondria. However, it also elicited a hydrogen peroxide burst. Therefore, it seems that redox priming in nondormant seeds that are highly sensitive to desiccation, although it positively affected desiccated seed performance, may not be a simple solution to reinvigorate stored seeds with a low-efficiency antioxidant system.
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spelling pubmed-103358492023-07-12 The chances in the redox priming of nondormant recalcitrant seeds by spermidine Fuchs, Hanna Plitta-Michalak, Beata P Małecka, Arleta Ciszewska, Liliana Sikorski, Łukasz Staszak, Aleksandra M Michalak, Marcin Ratajczak, Ewelina Tree Physiol Research Paper The problems posed by seed sensitivity to desiccation and aging have motivated the development of various techniques for mitigating their detrimental effects. The redox priming of seeds in antioxidant solution to improve their postharvest performance is one of the approaches. Spermidine (Spd) was tested as an invigorating solution on nondormant recalcitrant (desiccation-sensitive) seeds of the silver maple (Acer saccharinum L.). The treatment resulted in an 8–10% increase in germination capacity in seeds subjected to mild and severe desiccation, while in aged seeds stored for 6 months, no significant change was observed. The cellular redox milieu, genetic stability, mitochondrial structure and function were investigated to provide information about the cellular targets of Spd activity. Spermidine improved the antioxidative capacity, especially the activity of catalase, and cellular membrane stability, protected genome integrity from oxidative damage and increased the efficiency of mitochondria. However, it also elicited a hydrogen peroxide burst. Therefore, it seems that redox priming in nondormant seeds that are highly sensitive to desiccation, although it positively affected desiccated seed performance, may not be a simple solution to reinvigorate stored seeds with a low-efficiency antioxidant system. Oxford University Press 2023-03-21 /pmc/articles/PMC10335849/ /pubmed/36943301 http://dx.doi.org/10.1093/treephys/tpad036 Text en © The Author(s) 2023. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Fuchs, Hanna
Plitta-Michalak, Beata P
Małecka, Arleta
Ciszewska, Liliana
Sikorski, Łukasz
Staszak, Aleksandra M
Michalak, Marcin
Ratajczak, Ewelina
The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title_full The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title_fullStr The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title_full_unstemmed The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title_short The chances in the redox priming of nondormant recalcitrant seeds by spermidine
title_sort chances in the redox priming of nondormant recalcitrant seeds by spermidine
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335849/
https://www.ncbi.nlm.nih.gov/pubmed/36943301
http://dx.doi.org/10.1093/treephys/tpad036
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