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Leaf K Interaction with Water Stress Inhibition of Nonstomatal-controlled Photosynthesis

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Journal Plant Physiol
Specialty Physiology
Date 1985 Sep 1
PMID 16664368
Citations 8
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Abstract

The relationship between leaf K(+) concentration, in vitro dehydration, and nonstomatal-controlled photosynthesis was investigated using leaf slices that were vacuum infiltrated with media containing varying sorbitol concentrations. The leaf slices were from plants either supplied with complete or K(+)-deficient medium throughout a 35-day growth period. During this time, leaf K(+) concentration, water potential, osmotic potential, and turgor pressure were monitored. Leaf K(+) concentration averaged 239 micomoles per gram (fresh weight) in control plants, and dropped to 74.3 micromoles per gram (fresh weight) in K(+)-deficient plants. Less negative osmotic potentials and resultant turgor loss in K(+)-deficient plants indicated that the osmotically active pool of cellular K(+) was lower in those plants.The decrease in leaf K(+) concentration enhanced the dehydration inhibition of photosynthesis. For example, increasing sorbitol from 0.33 to 0.5 molar during incubation inhibited photosynthesis in the controls by 14% or less. This same protocol resulted in an inhibition of photosynthesis by as much as 41% in K(+)-deficient tissue. In contrast to the data obtained with leaf slices, dehydration inhibition of isolated chloroplast photosynthesis was not affected by K(+) status of parent plant material. These data are consistent with the hypothesis that one effect of leaf K(+) deficiencies on photosynthetic response to dehydration may be mediated by extra-choloroplastic factors.Ammonium ions, which facilitate stromal alkalinization, reversed the increased sensitivity of K(+)-deficient leaf slice photosynthesis to cell dehydration. However, NH(4) (+) had no effect on photosynthesis of K(+)-deficient leaf slices under nonhypertonic conditions. These data suggest that endogenous extra-chloroplastic K(+) may modulate dehydration inhibition of photosynthesis, possibly by facilitating stromal alkalinization.

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References
1.
Berkowitz G, Chen C, Gibbs M . Stromal acidification mediates in vivo water stress inhibition of nonstomatal-controlled photosynthesis. Plant Physiol. 1983; 72(4):1123-6. PMC: 1066385. DOI: 10.1104/pp.72.4.1123. View

2.
Berkowitz G, Gibbs M . Effect of osmotic stress on photosynthesis studied with the isolated spinach chloroplast : site-specific inhibition of the photosynthetic carbon reduction cycle. Plant Physiol. 1982; 70(5):1535-40. PMC: 1065920. DOI: 10.1104/pp.70.5.1535. View

3.
Berkowitz G, Gibbs M . Reduced osmotic potential inhibition of photosynthesis : site-specific effects of osmotically induced stromal acidification. Plant Physiol. 1983; 72(4):1100-9. PMC: 1066381. DOI: 10.1104/pp.72.4.1100. View

4.
Heath R, Leech R . The stimulation of CO2-supported O2 evolution in intact spinach chloroplasts by ammonium ion. Arch Biochem Biophys. 1978; 190(1):221-6. DOI: 10.1016/0003-9861(78)90271-0. View

5.
Maury W, Huber S, Moreland D . Effects of Magnesium on Intact Chloroplasts : II. CATION SPECIFICITY AND INVOLVEMENT OF THE ENVELOPE ATPase IN (SODIUM) POTASSIUM/PROTON EXCHANGE ACROSS THE ENVELOPE. Plant Physiol. 1981; 68(6):1257-63. PMC: 426084. DOI: 10.1104/pp.68.6.1257. View