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Article

LED Light Treatments Induce Activation of the Antioxidant Defense System in Thymus mastichina L.

by
Gustavo J. Cáceres-Cevallos
,
Almudena Bayo-Canha
,
María Quílez
and
María J. Jordán
*
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), La Alberca de las Torres, 30150 Murcia, Spain
*
Author to whom correspondence should be addressed.
Plants 2025, 14(18), 2930; https://doi.org/10.3390/plants14182930
Submission received: 22 August 2025 / Revised: 12 September 2025 / Accepted: 17 September 2025 / Published: 20 September 2025
(This article belongs to the Section Plant Physiology and Metabolism)

Abstract

This study investigated how different spectral ranges of LED light affect the synthesis of photosynthetic pigments and antioxidant systems in Thymus mastichina L., focusing on two ecotypes with distinct chemotypes: linalool and eucalyptol. The ecotypes were exposed to white, red, blue, red-blue (70:30), white-blue, or white-red light for 30 days under a 16/8 h light/dark cycle (115 μmol/m2s). Photosynthetic pigment content, lipid oxidative damage, antioxidant capacities, and both enzymatic (SOD, CAT) and non-enzymatic (tocopherols and polyphenols) antioxidant systems were assessed. For the linalool chemotype, red-blue light significantly increased carotenoid content, antioxidant capacity, and catalase activity, while elevating levels of plastochromanol-8 and phenolic compounds such as salvianolic acid B, rosmarinic acid, and 6-OH-apigenin-7-hexoside, thereby reducing oxidative stress. In contrast, for the eucalyptol chemotype, pure red light produced the most significant enhancements in carotenoid synthesis and antioxidant defenses, substantial increases in key compounds such as salvianic, neochlorogenic, rosmarinic, and lithospermic acids, and salvianolic acids E and B, and higher levels of plastochromanol-8. Additionally, both SOD and CAT activities increased, providing greater protection against lipid oxidation. These findings highlight the importance of customizing light treatments not only based on plant species but also according to chemotype to obtain optimal biochemical and physiological outcomes.
Keywords: Thymus mastichina; Spanish marjoram; LED light spectra; photosynthetic pigments; SOD; CAT; tocopherols; polyphenols; oxidative damage Thymus mastichina; Spanish marjoram; LED light spectra; photosynthetic pigments; SOD; CAT; tocopherols; polyphenols; oxidative damage

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MDPI and ACS Style

Cáceres-Cevallos, G.J.; Bayo-Canha, A.; Quílez, M.; Jordán, M.J. LED Light Treatments Induce Activation of the Antioxidant Defense System in Thymus mastichina L. Plants 2025, 14, 2930. https://doi.org/10.3390/plants14182930

AMA Style

Cáceres-Cevallos GJ, Bayo-Canha A, Quílez M, Jordán MJ. LED Light Treatments Induce Activation of the Antioxidant Defense System in Thymus mastichina L. Plants. 2025; 14(18):2930. https://doi.org/10.3390/plants14182930

Chicago/Turabian Style

Cáceres-Cevallos, Gustavo J., Almudena Bayo-Canha, María Quílez, and María J. Jordán. 2025. "LED Light Treatments Induce Activation of the Antioxidant Defense System in Thymus mastichina L." Plants 14, no. 18: 2930. https://doi.org/10.3390/plants14182930

APA Style

Cáceres-Cevallos, G. J., Bayo-Canha, A., Quílez, M., & Jordán, M. J. (2025). LED Light Treatments Induce Activation of the Antioxidant Defense System in Thymus mastichina L. Plants, 14(18), 2930. https://doi.org/10.3390/plants14182930

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