Antioxidative Defense System, Pigment Composition, and Photosynthetic Efficiency in Two Wheat Cultivars Subjected to Drought1
- 1 March 1999
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 119 (3) , 1091-1100
- https://doi.org/10.1104/pp.119.3.1091
Abstract
We analyzed antioxidative defenses, photosynthesis, and pigments (especially xanthophyll-cycle components) in two wheat (Triticum durum Desf.) cultivars, Adamello and Ofanto, during dehydration and rehydration to determine the difference in their sensitivities to drought and to elucidate the role of different protective mechanisms against oxidative stress. Drought caused a more pronounced inhibition in growth and photosynthetic rates in the more sensitive cv Adamello compared with the relatively tolerant cv Ofanto. During dehydration the glutathione content decreased in both wheat cultivars, but only cv Adamello showed a significant increase in glutathione reductase and hydrogen peroxide-glutathione peroxidase activities. The activation states of two sulfhydryl-containing chloroplast enzymes, NADP+-dependent glyceraldehyde-3-phosphate dehydrogenase and fructose-1,6-bisphosphatase, were maintained at control levels during dehydration and rehydration in both cultivars. This indicates that the defense systems involved are efficient in the protection of sulfhydryl groups against oxidation. Drought did not cause significant effects on lipid peroxidation. Upon dehydration, a decline in chlorophylla, lutein, neoxanthin, and β-carotene contents, and an increase in the pool of de-epoxidized xanthophyll-cycle components (i.e. zeaxanthin and antheraxanthin), were evident only in cv Adamello. Accordingly, after exposure to drought, cv Adamello showed a larger reduction in the actual photosystem II photochemical efficiency and a higher increase in nonradiative energy dissipation than cv Ofanto. Although differences in zeaxanthin content were not sufficient to explain the difference in drought tolerance between the two cultivars, zeaxanthin formation may be relevant in avoiding irreversible damage to photosystem II in the more sensitive cultivar.Keywords
This publication has 40 references indexed in Scilit:
- The role of the glutathione system during dehydration of Boea hygroscopicaPhysiologia Plantarum, 1997
- Effects of moderate drought on ascorbate peroxidase and glutathione reductase activities in mesophyll and bundle sheath cells of maizePhysiologia Plantarum, 1995
- Sunflower seedlings subjected to increasing water deficit stress: oxidative stress and defence mechanismsPhysiologia Plantarum, 1995
- Antioxidant system in Sporobolus stapfianus: Changes in response to desiccation and rehydrationPhytochemistry, 1994
- The role of active oxygen in the response of plants to water deficit and desiccationNew Phytologist, 1993
- Photoprotection and Other Responses of Plants to High Light StressAnnual Review of Plant Biology, 1992
- Molecular and Cellular Aspects of Thiol–Disulfide ExchangePublished by Wiley ,1990
- Zeaxanthin and the Heat Dissipation of Excess Light Energy in Nerium oleander Exposed to a Combination of High Light and Water StressPlant Physiology, 1988
- Free radical production, catalase and superoxide dismutase activities and membrane integrity during senescence of petals of cut carnations (Dianthus caryophyllus)Physiologia Plantarum, 1987
- Enzyme Dynamics of the Resurrection Plant Selaginella lepidophylla (Hook. & Grev.) Spring during RehydrationPlant Physiology, 1986