Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation

The effects of ozone upon 3-year-old trees of Clementina mandarin (Citrus clementina Hort. ex Tan.) cv. Marisol exposed for 12 months to ambient (10 nl l(-1)) and high (30 and 65 nl l(-1)) concentrations in open top chambers (OTCs) were investigated. The data showed that in leaves, ozone reduced tot...

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Autores principales: Iglesias, Domingo J., Calatayud, Ángeles, Barreno, Eva, Primo-Millo, Eduardo, Talón, Manuel
Formato: article
Lenguaje:Inglés
Publicado: 2017
Acceso en línea:http://hdl.handle.net/20.500.11939/5370
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author Iglesias, Domingo J.
Calatayud, Ángeles
Barreno, Eva
Primo-Millo, Eduardo
Talón, Manuel
author_browse Barreno, Eva
Calatayud, Ángeles
Iglesias, Domingo J.
Primo-Millo, Eduardo
Talón, Manuel
author_facet Iglesias, Domingo J.
Calatayud, Ángeles
Barreno, Eva
Primo-Millo, Eduardo
Talón, Manuel
author_sort Iglesias, Domingo J.
collection ReDivia
description The effects of ozone upon 3-year-old trees of Clementina mandarin (Citrus clementina Hort. ex Tan.) cv. Marisol exposed for 12 months to ambient (10 nl l(-1)) and high (30 and 65 nl l(-1)) concentrations in open top chambers (OTCs) were investigated. The data showed that in leaves, ozone reduced total chlorophylls, carotenoid and carbohydrate concentration. and increased 1-aminocyclopropane-1-carboxylic acid (ACC) content and ethylene production. In treated plants, the ascorbate leaf pool was decreased, while lipid peroxidation and Solute leakaGe were significantly higher than in ozone-free controls. The data indicated that ozone triggered protective mechanisms against oxidative stress in citrus. (c) 2006 Elsevier SAS. All rights reserved.
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spelling ReDivia53702025-04-25T14:42:12Z Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation Iglesias, Domingo J. Calatayud, Ángeles Barreno, Eva Primo-Millo, Eduardo Talón, Manuel The effects of ozone upon 3-year-old trees of Clementina mandarin (Citrus clementina Hort. ex Tan.) cv. Marisol exposed for 12 months to ambient (10 nl l(-1)) and high (30 and 65 nl l(-1)) concentrations in open top chambers (OTCs) were investigated. The data showed that in leaves, ozone reduced total chlorophylls, carotenoid and carbohydrate concentration. and increased 1-aminocyclopropane-1-carboxylic acid (ACC) content and ethylene production. In treated plants, the ascorbate leaf pool was decreased, while lipid peroxidation and Solute leakaGe were significantly higher than in ozone-free controls. The data indicated that ozone triggered protective mechanisms against oxidative stress in citrus. (c) 2006 Elsevier SAS. All rights reserved. 2017-06-01T10:12:14Z 2017-06-01T10:12:14Z 2006 FEB-MAR 2006 article Iglesias, D.J., Calatayud, Angeles, Barreno, Eva, Primo-Millo, E., Talon, M. (2006). Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation. Plant Physiology and Biochemistry, 44(2-3), 125-131. 0981-9428 http://hdl.handle.net/20.500.11939/5370 10.1016/j.plaphy.2006.03.007 en openAccess Impreso
spellingShingle Iglesias, Domingo J.
Calatayud, Ángeles
Barreno, Eva
Primo-Millo, Eduardo
Talón, Manuel
Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title_full Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title_fullStr Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title_full_unstemmed Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title_short Responses of citrus plants to ozone: leaf biochemistry, antioxidant mechanisms and lipid peroxidation
title_sort responses of citrus plants to ozone leaf biochemistry antioxidant mechanisms and lipid peroxidation
url http://hdl.handle.net/20.500.11939/5370
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AT barrenoeva responsesofcitrusplantstoozoneleafbiochemistryantioxidantmechanismsandlipidperoxidation
AT primomilloeduardo responsesofcitrusplantstoozoneleafbiochemistryantioxidantmechanismsandlipidperoxidation
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