Soil in the Environment · 2012 · 45 citations · 23 references
Ascorbic AcidNet PhotosynthesisEngineeringBotanyDroughtEnvironmental EngineeringExogenous ApplicationPlant GrowthAbiotic StressAgricultural EconomicsPlant StressCrop Water RelationCrop PhysiologyPlant-abiotic InteractionPhotosynthesisPlant Physiology
Drought causes considerable reduction in plant growth. A hydroponic experiment was conducted to appraise the potential role of exogenously applied ascorbic acid in alleviating the effect of drought on wheat. Two contrasting wheat genotypes, a drought tolerant cultivar Chakwal-86 and a drought sensitive strain 6544-6 were used in the study. Drought was induced by dissolving 20% Polyethylene glycol (PEG8000) in the nutrient solution producing -0.6MPa osmotic stress. Drought caused a significant decrease in chlorophyll pigments and net photosynthesis resulting in growth reduction of both wheat genotypes. However, this decrease was more severe in the genotype 6544-6 compared to Chakwal-86. Ascorbic acid (AsA) was applied through rooting medium, as a foliar spray and seed soaking treatment. Ascorbic acid treated seedlings of both genotypes maintained higher chlorophyll contents, net photosynthesis and growth compared to the non-treated plants. Of the three different modes of ascorbic acid application, rooting medium was more effective in alleviating the adversities of drought in wheat.
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COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN <i>BETA VULGARIS</i>
Daniel I. Arnon · PLANT PHYSIOLOGY · 1949 · 21.9K citations · Full text
Carotenoids as membrane stabilizers in chloroplasts
Michel Havaux · Trends in Plant Science · 1998 · 676 citations
Biology, Carotenoid, Botany +7