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AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions

Alternative oxidase (AOX) in the mitochondrial electron transport chain is considered important for sustaining photosynthesis under high light conditions. Here, we examined the effects of the AOX pathway on the state of chloroplast photoprotective systems. Arabidopsis thaliana plants (4 weeks old),...

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Autores principales: Garmash, Elena V., Dymova, Olga V., Silina, Ekaterina V., Malyshev, Ruslan V., Belykh, Elena S., Shelyakin, Mikhail A., Velegzhaninov, Ilya O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697105/
https://www.ncbi.nlm.nih.gov/pubmed/36432760
http://dx.doi.org/10.3390/plants11223030
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author Garmash, Elena V.
Dymova, Olga V.
Silina, Ekaterina V.
Malyshev, Ruslan V.
Belykh, Elena S.
Shelyakin, Mikhail A.
Velegzhaninov, Ilya O.
author_facet Garmash, Elena V.
Dymova, Olga V.
Silina, Ekaterina V.
Malyshev, Ruslan V.
Belykh, Elena S.
Shelyakin, Mikhail A.
Velegzhaninov, Ilya O.
author_sort Garmash, Elena V.
collection PubMed
description Alternative oxidase (AOX) in the mitochondrial electron transport chain is considered important for sustaining photosynthesis under high light conditions. Here, we examined the effects of the AOX pathway on the state of chloroplast photoprotective systems. Arabidopsis thaliana plants (4 weeks old), comprising three genotypes (wild type [WT], overexpressing [XX-2] and antisense [AS-12] lines for AOX1a), were exposed to moderately high light conditions (MHL, 400 μmol m(−2) s(−1)) in a short-term experiment (8 h). After 8 h of MHL, the WT and XX-2 plants showed stable non-photochemical quenching (qN) and violaxanthin cycle activity. Antisense plants displayed the lowest level of qN and a lower de-epoxidation state (DEPS) relative to plants of the same line after 4–6 h MHL, as well as compared to WT and XX-2 plants after 8 h MHL. The decline in DEPS in AS-12 plants was attributed to an insufficient violaxanthin de-epoxidase activity, which in turn was associated with a decrease in reduced ascorbate levels in the chloroplasts and leaves. Simultaneously, gene expression and the activity of ascorbate peroxidase in the antisense line increased after 8 h of MHL, supporting the compensatory effect of the antioxidant system when AOX1a expression is suppressed. This study emphasizes the role played by AOX in modulating the photoprotection processes and in the maintenance of relationships between mitochondria and chloroplasts by influencing ascorbate content.
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spelling pubmed-96971052022-11-26 AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions Garmash, Elena V. Dymova, Olga V. Silina, Ekaterina V. Malyshev, Ruslan V. Belykh, Elena S. Shelyakin, Mikhail A. Velegzhaninov, Ilya O. Plants (Basel) Article Alternative oxidase (AOX) in the mitochondrial electron transport chain is considered important for sustaining photosynthesis under high light conditions. Here, we examined the effects of the AOX pathway on the state of chloroplast photoprotective systems. Arabidopsis thaliana plants (4 weeks old), comprising three genotypes (wild type [WT], overexpressing [XX-2] and antisense [AS-12] lines for AOX1a), were exposed to moderately high light conditions (MHL, 400 μmol m(−2) s(−1)) in a short-term experiment (8 h). After 8 h of MHL, the WT and XX-2 plants showed stable non-photochemical quenching (qN) and violaxanthin cycle activity. Antisense plants displayed the lowest level of qN and a lower de-epoxidation state (DEPS) relative to plants of the same line after 4–6 h MHL, as well as compared to WT and XX-2 plants after 8 h MHL. The decline in DEPS in AS-12 plants was attributed to an insufficient violaxanthin de-epoxidase activity, which in turn was associated with a decrease in reduced ascorbate levels in the chloroplasts and leaves. Simultaneously, gene expression and the activity of ascorbate peroxidase in the antisense line increased after 8 h of MHL, supporting the compensatory effect of the antioxidant system when AOX1a expression is suppressed. This study emphasizes the role played by AOX in modulating the photoprotection processes and in the maintenance of relationships between mitochondria and chloroplasts by influencing ascorbate content. MDPI 2022-11-09 /pmc/articles/PMC9697105/ /pubmed/36432760 http://dx.doi.org/10.3390/plants11223030 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
Garmash, Elena V.
Dymova, Olga V.
Silina, Ekaterina V.
Malyshev, Ruslan V.
Belykh, Elena S.
Shelyakin, Mikhail A.
Velegzhaninov, Ilya O.
AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title_full AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title_fullStr AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title_full_unstemmed AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title_short AOX1a Expression in Arabidopsis thaliana Affects the State of Chloroplast Photoprotective Systems under Moderately High Light Conditions
title_sort aox1a expression in arabidopsis thaliana affects the state of chloroplast photoprotective systems under moderately high light conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697105/
https://www.ncbi.nlm.nih.gov/pubmed/36432760
http://dx.doi.org/10.3390/plants11223030
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