Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?

Global concern regarding climate change is prompting the development of strategies to improve the resistance of plants to abiotic stresses. Drought is one of the main threats that affect the productivity of rainfed crops, such as T. zygis ssp. gracilis. Plants under stressful conditions may generate...

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Main Authors: Gustavo J. Cáceres-Cevallos, María Quílez, Alfonso A. Albacete-Moreno, María J. Jordán
Format: Article
Language:English
Published: Elsevier 2024-03-01
Series:Plant Stress
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2667064X24000277
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author Gustavo J. Cáceres-Cevallos
María Quílez
Alfonso A. Albacete-Moreno
María J. Jordán
author_facet Gustavo J. Cáceres-Cevallos
María Quílez
Alfonso A. Albacete-Moreno
María J. Jordán
author_sort Gustavo J. Cáceres-Cevallos
collection DOAJ
description Global concern regarding climate change is prompting the development of strategies to improve the resistance of plants to abiotic stresses. Drought is one of the main threats that affect the productivity of rainfed crops, such as T. zygis ssp. gracilis. Plants under stressful conditions may generate a “memory” that allows them to cope more effectively with future stress. Thus, the objective of this study was to determine whether the pre-treatment of thyme with high-intensity light-emitting diode light (light priming) could enhance its physiological response and activation of its antioxidant defense system to subsequent severe drought. To that end, physiological parameters including relative water content, and proline and abscisic acid levels, photosynthetic pigment and tocochromanols content, phenolic profiles, antioxidant capacity, and lipid peroxidation were quantified using 1600 clones from 20 ecotypes. Results confirmed the negative effect of drought on overall plant status, but also showed a positive effect of light priming, this improved the antioxidant system response in around of 70 % of ecotypes of red thyme. Specifically, light pre-treatment was associated with smaller reduction in content of photosynthetic pigments and tocochromanols, higher caffeic acid dimethyl ether content, and reduced lipid peroxidation in response to drought. Light priming may generate a “memory” that helps thyme overcome subsequent oxidative stress.
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spelling doaj.art-ba5fe73023ca4cdb900a22af9cf464e62024-02-03T06:39:51ZengElsevierPlant Stress2667-064X2024-03-0111100373Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?Gustavo J. Cáceres-Cevallos0María Quílez1Alfonso A. Albacete-Moreno2María J. Jordán3Research Group on Rainfed Agriculture for Rural Development, Department of Rural Development, Oenology and Sustainable Agriculture, Murcia Institute of Agri-Food and Environmental Research (IMIDA), Murcia, Spain; Corresponding author.Research Group on Rainfed Agriculture for Rural Development, Department of Rural Development, Oenology and Sustainable Agriculture, Murcia Institute of Agri-Food and Environmental Research (IMIDA), Murcia, SpainPlant Nutrition Group, CEBAS (CSIC), Campus University Espinardo, Murcia, SpainResearch Group on Rainfed Agriculture for Rural Development, Department of Rural Development, Oenology and Sustainable Agriculture, Murcia Institute of Agri-Food and Environmental Research (IMIDA), Murcia, SpainGlobal concern regarding climate change is prompting the development of strategies to improve the resistance of plants to abiotic stresses. Drought is one of the main threats that affect the productivity of rainfed crops, such as T. zygis ssp. gracilis. Plants under stressful conditions may generate a “memory” that allows them to cope more effectively with future stress. Thus, the objective of this study was to determine whether the pre-treatment of thyme with high-intensity light-emitting diode light (light priming) could enhance its physiological response and activation of its antioxidant defense system to subsequent severe drought. To that end, physiological parameters including relative water content, and proline and abscisic acid levels, photosynthetic pigment and tocochromanols content, phenolic profiles, antioxidant capacity, and lipid peroxidation were quantified using 1600 clones from 20 ecotypes. Results confirmed the negative effect of drought on overall plant status, but also showed a positive effect of light priming, this improved the antioxidant system response in around of 70 % of ecotypes of red thyme. Specifically, light pre-treatment was associated with smaller reduction in content of photosynthetic pigments and tocochromanols, higher caffeic acid dimethyl ether content, and reduced lipid peroxidation in response to drought. Light priming may generate a “memory” that helps thyme overcome subsequent oxidative stress.http://www.sciencedirect.com/science/article/pii/S2667064X24000277Red thyme1LED-light2Drought stress3Phenolic profile4Tocochromanols5Oxidative stress6
spellingShingle Gustavo J. Cáceres-Cevallos
María Quílez
Alfonso A. Albacete-Moreno
María J. Jordán
Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
Plant Stress
Red thyme1
LED-light2
Drought stress3
Phenolic profile4
Tocochromanols5
Oxidative stress6
title Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
title_full Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
title_fullStr Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
title_full_unstemmed Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
title_short Does high-intensity light pre-treatment improve drought response in Thymus zygis ssp. gracilis?
title_sort does high intensity light pre treatment improve drought response in thymus zygis ssp gracilis
topic Red thyme1
LED-light2
Drought stress3
Phenolic profile4
Tocochromanols5
Oxidative stress6
url http://www.sciencedirect.com/science/article/pii/S2667064X24000277
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