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Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale

Enhanced antioxidant defence plays an essential role in plant survival under stress conditions. However, excessive antioxidant activity sometimes suppresses the signal necessary for the initiation of the desired biological reactions. One such example is microspore embryogenesis (ME)—a process of emb...

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Autores principales: Żur, Iwona, Kopeć, Przemysław, Surówka, Ewa, Dubas, Ewa, Krzewska, Monika, Nowicka, Anna, Janowiak, Franciszek, Juzoń, Katarzyna, Janas, Agnieszka, Barna, Balázs, Fodor, József
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8389252/
https://www.ncbi.nlm.nih.gov/pubmed/34439502
http://dx.doi.org/10.3390/antiox10081254
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author Żur, Iwona
Kopeć, Przemysław
Surówka, Ewa
Dubas, Ewa
Krzewska, Monika
Nowicka, Anna
Janowiak, Franciszek
Juzoń, Katarzyna
Janas, Agnieszka
Barna, Balázs
Fodor, József
author_facet Żur, Iwona
Kopeć, Przemysław
Surówka, Ewa
Dubas, Ewa
Krzewska, Monika
Nowicka, Anna
Janowiak, Franciszek
Juzoń, Katarzyna
Janas, Agnieszka
Barna, Balázs
Fodor, József
author_sort Żur, Iwona
collection PubMed
description Enhanced antioxidant defence plays an essential role in plant survival under stress conditions. However, excessive antioxidant activity sometimes suppresses the signal necessary for the initiation of the desired biological reactions. One such example is microspore embryogenesis (ME)—a process of embryo-like structure formation triggered by stress in immature male gametophytes. The study focused on the role of reactive oxygen species and antioxidant defence in triticale (×Triticosecale Wittm.) and barley (Hordeum vulgare L.) microspore reprogramming. ME was induced through various stress treatments of tillers and its effectiveness was analysed in terms of ascorbate and glutathione contents, total activity of low molecular weight antioxidants and activities of glutathione–ascorbate cycle enzymes. The most effective treatment for both species was a combination of low temperature and exogenous application of 0.3 M mannitol, with or without 0.3 mM reduced glutathione. The applied treatments induced genotype-specific defence responses. In triticale, both ascorbate and glutathione were associated with ME induction, though the role of glutathione did not seem to be related to its function as a reducing agent. In barley, effective ME was accompanied by an accumulation of ascorbate and high activity of enzymes regulating its redox status, without direct relation to glutathione content.
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spelling pubmed-83892522021-08-27 Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale Żur, Iwona Kopeć, Przemysław Surówka, Ewa Dubas, Ewa Krzewska, Monika Nowicka, Anna Janowiak, Franciszek Juzoń, Katarzyna Janas, Agnieszka Barna, Balázs Fodor, József Antioxidants (Basel) Article Enhanced antioxidant defence plays an essential role in plant survival under stress conditions. However, excessive antioxidant activity sometimes suppresses the signal necessary for the initiation of the desired biological reactions. One such example is microspore embryogenesis (ME)—a process of embryo-like structure formation triggered by stress in immature male gametophytes. The study focused on the role of reactive oxygen species and antioxidant defence in triticale (×Triticosecale Wittm.) and barley (Hordeum vulgare L.) microspore reprogramming. ME was induced through various stress treatments of tillers and its effectiveness was analysed in terms of ascorbate and glutathione contents, total activity of low molecular weight antioxidants and activities of glutathione–ascorbate cycle enzymes. The most effective treatment for both species was a combination of low temperature and exogenous application of 0.3 M mannitol, with or without 0.3 mM reduced glutathione. The applied treatments induced genotype-specific defence responses. In triticale, both ascorbate and glutathione were associated with ME induction, though the role of glutathione did not seem to be related to its function as a reducing agent. In barley, effective ME was accompanied by an accumulation of ascorbate and high activity of enzymes regulating its redox status, without direct relation to glutathione content. MDPI 2021-08-05 /pmc/articles/PMC8389252/ /pubmed/34439502 http://dx.doi.org/10.3390/antiox10081254 Text en © 2021 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
Żur, Iwona
Kopeć, Przemysław
Surówka, Ewa
Dubas, Ewa
Krzewska, Monika
Nowicka, Anna
Janowiak, Franciszek
Juzoń, Katarzyna
Janas, Agnieszka
Barna, Balázs
Fodor, József
Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title_full Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title_fullStr Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title_full_unstemmed Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title_short Impact of Ascorbate—Glutathione Cycle Components on the Effectiveness of Embryogenesis Induction in Isolated Microspore Cultures of Barley and Triticale
title_sort impact of ascorbate—glutathione cycle components on the effectiveness of embryogenesis induction in isolated microspore cultures of barley and triticale
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8389252/
https://www.ncbi.nlm.nih.gov/pubmed/34439502
http://dx.doi.org/10.3390/antiox10081254
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