Modulation of osmotic stress effects on photosynthesis and respiration by temperature in mesophyll protoplast of pea

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Date
2004-12-01
Authors
Dwivedi, Padmanabh
Raghavendra, A. S.
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Abstract
Exposure of mesophyll protoplast of pea to osmotic stress decreases the rate of photosynthesis while stimulating marginally the respiratory rate of mesophyll protoplasts. The interaction of osmotic and temperature stress during the modulation of photosynthetic and respiratory rates of pea (Pisum sativum var Azad P1) mesophyll protoplasts was investigated. The protoplasts were exposed to either iso-osmotic (0.4 M) or hyper-osmotic (1.0 M) concentration of sorbitol at 15° and 25°C. The rates of photosynthesis and respiration were studied. At optimum temperature of 25°C, there was a decrease in photosynthesis ( < 10%) at hyper-osmoticum (osmotic effect), whereas respiration increased marginally (by about 15%). Low temperature (15°C) aggravated the sensitivity of both respiration and photosynthesis to osmotic stress. At 15°C, the decrease in photosynthesis due to osmotic stress was > 35%, while the respiratory rate was stimulated by 30%. The relative proportion of cytochrome pathway decreased by about 50% at both 15°C and 25°C while that of alternative pathway increased, more so, at 15°C, when the mesophyll protoplasts were subjected to hyper-osmoticum stress. The titration experiments showed that extent of engagement of alternative pathway was higher, the slope value was slightly higher for 15°C compared to 25°C. Low temperature modulates the effect of hyper-osmoticum stress on photosynthesis and respiration, and results in increased participation of alternative pathway.
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Keywords
Alternative pathway, Cytochrome pathway, Osmotic stress, Protoplast, Respiration, Temperature stress
Citation
Indian Journal of Experimental Biology. v.42(12)