246
L. Kappen et al.
Parlange JY, Waggoner PE (1970) Stomatal dimensions and resistance to diffusion. Plant
Physiol 46: 337-342
Peel DA (1983) Antarctic ice: the frozen time capsule. New Sci 98: 477
Poffenroth M, Green DB, Tallman G (1992) Sugar concentrations in guard cells of Vicia
faba illuminated with red or blue light. Plant Physiol 98: 1460-1471
Raschke K (1970) Stomatal responses to pressure changes and interruptions in the water
supply of detached leaves of Zea mays L. Plant Physiol 45: 415-423
Raschke K (1979) Movements of stomata. In: Haupt W, Feinleib ME (eds) Encyclopedia
of plant physiology (NS), vol 7. Physiology of movements. Springer, Berlin Heidelberg
New York, pp 383-441
Raschke K, Kiihl U (1969) Stomatal responses to changes in atmospheric humidity and
water supply: experiments with leaf sections of Zea mays (L.) in C0z-free air. Planta
87: 36-48
Schultz G (1990) Moglichkeiten und Grenzen der in situ Beobachtung von Spalt6ffnungen
mit der Bildschirmmethode. Diplomarbeit, Universitat Kiel, 110 pp
Schulze ED (1986) Carbon dioxide and water vapour exchange in response to drought in
the atmosphere and in the soil. Ann Rev Plant Physiol 37: 247-274
Schulze ED, Hall AE (1982) Stomatal responses, water loss and CO2 assimilation rates of
plants in contrasting environments. In: Lange OL, Nobel PS, Osmond CB, Ziegler H
(eds) Encyclopedia of plant physiology (NS), vol 12B. Physiological plant ecology II.
Water relations and carbon assimilation. Springer, Berlin Heidelberg New York, p'p
181-230
Schulze ED, Lange OL, Buschbom U, Kappen L, Evenari M (1972) Stomatal responses
to changes in humidity in plants growing in the desert. Planta 108: 259-270
Schulze ED, Turner NC, Gollan T, Shackel KA (1987) Stomatal responses to air humidity and to soil drought. In: Zeiger E, Farquhar GD, Cowan IR (eds) Stomatal
function. Stanford University Press, Stanford, pp 311-322
Schurr U (1992) Stomatal response to drying soil in relation to changes in the xylem sap
composition of Helianthus annuus. II. Stomatal sensitivity to abscisic acid imported
from the xylem sap. Plant Cell Environ 15: 561-567
Sharkey TD, Ogawa T (1987) Stomatal responses to light. In: Zeiger E, Farquhar GD,
Cowan IR (eds) Stomatal function. Stanford University Press, Stanford, pp 195-208
Stalfelt G (1929) Die Abhangigkeit der Spaltoffnungsreaktion von der Wasserbilanz.
Planta 8: 287-340
Stalfelt MG (1962) The effect of temperature on opening of the stomatal cells. Physiol
Plant 15: 772-779
Ting IP (1987) Stomata in plants with crassulacean acid metabolism. In: Zeiger E,
Farquhar GD, Cowan IR (eds) Stomatal function. Stanford University Press, Stanford,
pp 353-366
Van Gardingen PR, Jeffree CE, Grace J (1989) Variation in stomatal aperture in leaves
of Avena fatua L. observed by low-temperature scanning electron microscopy. Plant
Cell Environ 12: 887-897
Vanselow RU (1990) Temperaturabhangigkeit der stomataren Reaktion von Vicia faba.
Diplomarbeit, Universitat Kiel, 90 pp
Von Caemmerer S, Farquhar GD (1981) Some relationships between the biochemistry of
photosynthesis and the gas exchange of leaves. Planta 153: 376-387
Willmer CM (1983) Stomata. Longman, London, 166 pp
Zeiger E, Farquhar GD, Cowan IR (eds) (1987) Stomatal function. Stanford University
Press, Stanford, 503 pp
Zhang J, Davies WJ (1989) Abscisic acid produced in dehydrating roots may enable the
plant to measure the water status of the soil. Plant Cell Environ 12: 73-81
L. Kappen et al.
Parlange JY, Waggoner PE (1970) Stomatal dimensions and resistance to diffusion. Plant
Physiol 46: 337-342
Peel DA (1983) Antarctic ice: the frozen time capsule. New Sci 98: 477
Poffenroth M, Green DB, Tallman G (1992) Sugar concentrations in guard cells of Vicia
faba illuminated with red or blue light. Plant Physiol 98: 1460-1471
Raschke K (1970) Stomatal responses to pressure changes and interruptions in the water
supply of detached leaves of Zea mays L. Plant Physiol 45: 415-423
Raschke K (1979) Movements of stomata. In: Haupt W, Feinleib ME (eds) Encyclopedia
of plant physiology (NS), vol 7. Physiology of movements. Springer, Berlin Heidelberg
New York, pp 383-441
Raschke K, Kiihl U (1969) Stomatal responses to changes in atmospheric humidity and
water supply: experiments with leaf sections of Zea mays (L.) in C0z-free air. Planta
87: 36-48
Schultz G (1990) Moglichkeiten und Grenzen der in situ Beobachtung von Spalt6ffnungen
mit der Bildschirmmethode. Diplomarbeit, Universitat Kiel, 110 pp
Schulze ED (1986) Carbon dioxide and water vapour exchange in response to drought in
the atmosphere and in the soil. Ann Rev Plant Physiol 37: 247-274
Schulze ED, Hall AE (1982) Stomatal responses, water loss and CO2 assimilation rates of
plants in contrasting environments. In: Lange OL, Nobel PS, Osmond CB, Ziegler H
(eds) Encyclopedia of plant physiology (NS), vol 12B. Physiological plant ecology II.
Water relations and carbon assimilation. Springer, Berlin Heidelberg New York, p'p
181-230
Schulze ED, Lange OL, Buschbom U, Kappen L, Evenari M (1972) Stomatal responses
to changes in humidity in plants growing in the desert. Planta 108: 259-270
Schulze ED, Turner NC, Gollan T, Shackel KA (1987) Stomatal responses to air humidity and to soil drought. In: Zeiger E, Farquhar GD, Cowan IR (eds) Stomatal
function. Stanford University Press, Stanford, pp 311-322
Schurr U (1992) Stomatal response to drying soil in relation to changes in the xylem sap
composition of Helianthus annuus. II. Stomatal sensitivity to abscisic acid imported
from the xylem sap. Plant Cell Environ 15: 561-567
Sharkey TD, Ogawa T (1987) Stomatal responses to light. In: Zeiger E, Farquhar GD,
Cowan IR (eds) Stomatal function. Stanford University Press, Stanford, pp 195-208
Stalfelt G (1929) Die Abhangigkeit der Spaltoffnungsreaktion von der Wasserbilanz.
Planta 8: 287-340
Stalfelt MG (1962) The effect of temperature on opening of the stomatal cells. Physiol
Plant 15: 772-779
Ting IP (1987) Stomata in plants with crassulacean acid metabolism. In: Zeiger E,
Farquhar GD, Cowan IR (eds) Stomatal function. Stanford University Press, Stanford,
pp 353-366
Van Gardingen PR, Jeffree CE, Grace J (1989) Variation in stomatal aperture in leaves
of Avena fatua L. observed by low-temperature scanning electron microscopy. Plant
Cell Environ 12: 887-897
Vanselow RU (1990) Temperaturabhangigkeit der stomataren Reaktion von Vicia faba.
Diplomarbeit, Universitat Kiel, 90 pp
Von Caemmerer S, Farquhar GD (1981) Some relationships between the biochemistry of
photosynthesis and the gas exchange of leaves. Planta 153: 376-387
Willmer CM (1983) Stomata. Longman, London, 166 pp
Zeiger E, Farquhar GD, Cowan IR (eds) (1987) Stomatal function. Stanford University
Press, Stanford, 503 pp
Zhang J, Davies WJ (1989) Abscisic acid produced in dehydrating roots may enable the
plant to measure the water status of the soil. Plant Cell Environ 12: 73-81
