Internal Coordination of Plant Responses to Drought and Evaporational Demand
201
Cowan IR, Farquhar GO (1977) Stomatal function in relation to leaf metabolism and
environment. Symp Soc Exp Bioi 31: 471-505
Cregg BM, Hennessey TC, Dougherty PM (1990) Water relations of loblolly pine trees in
southeastern Oklahoma (USA) following precommercial thinning. Can J For Res 20:
1508-1513
Davenport TL, Jordan WR, Morgan PW (1977) Movement and endogenous levels of
abscisic acid during water-stress-induced abscission in cotton seedlings. Plant Physiol
59: 1165-1168
Davies WJ, Metcalfe J, Lodge TA, da Costa AR (1986) Plant growth substances and the
regulation of growth under drought. Aust 1 Plant Physiol 13: 105-125
De Silva DLR, Hetherington AM, Mansfield TA (1985) Synergism between calcium ions
and abscisic acid in preventing stomatal opening. New Phytol 100: 473-482
Dixon HH (1914) Transpiration and the ascent of sap in plants. Macmillan, London
Field CB, Holbrook NM (1989) Catastrophic xylem failure: tree life at the brink. TREE
4: 124-125
Fischer RA, Hsiao TC, Hagan RM (1970) After-effect of water stress on stomatal
opening potential. J Exp Bot 21: 371-385
FuBeder A, Wartinger A, Hartung W, Schulze E-D, Heilmeier H (1992) Cytokinin in the
xylem sap of desert grown almond (Prunus dulcis) trees: daily courses and their
possible interactions with abscisic acid and leaf conductance. New Phytol 122: 45-52
Gates DM (1976) Energy exchange and transpiration. In: Lange OL, Kappen L, Schulze
E-D (eds) Water and plant life. Ecological Studies, vol 19. Springer, Berlin Heidelberg
New York pp 137-147
Glinka Z, Reinhold L (1971) Abscisic acid raises the permeability of plant cells to water.
Plant Physiol 48: 103-105
Gollan T, Turner NC, Schulze E-D (1985) The responses of stomata and leaf gas
exchange to vapour pressure deficits and soil water content. Oecologia 65: 356-362
Gollan T, Passioura 1B, Munns R (1986) Soil water status affects the stomatal conductance of fully turgid wheat and sunflower leaves. Aust J Plant Physiol 13: 459-464
Gollan T, Davies W1, Schurr U, Zhang J (1989) Control of gas exchange: evidence for
root-shoot communication on drying soil. Ann Sci For 46: 393s-400s
Gollan T, Schurr U, Schulze E-D (1992) Stomatal response to drying soil in relation to
changes in the xylem sap composition of Helianthus annuus. I. The concentration of
cations, anions, amino acids in, and pH of, the xylem sap. Plant Cell Environ 15:
551-559
Gowing D1G, Davies WJ, Jones HG (1990) A positive root-sourced signal as an indicator
of soil drying in apple, Malus x domestica Borkh. J Exp Bot 41: 1535-1540
Hall AE, Schulze E-D, Lange OL (1976) Current perspectives of steady-state stomatal
responses to environment. In: Lange OL, Kappen L, Schulze E-D (eds) Water and
plant life. Ecological Studies, vol 19. Springer, Berlin Heidelberg New York, pp
169-188
Hartung W (1977) Der Transport von [2_14C] Abscisinsaure aus dem Wurzelsystem
intakter Bohnenkeimlinge in die oberirdischen Teile der Pflanze. Z Pflanzenphysiol 83:
81-84
Heckenberger U (1993) Stomatareaktion auf kontrollierte Veranderungen des Xylemsaftes
mit Abscisinsaure. Diplom Thesis, Bayreuth
Heilmann B, Hartung W, Gimmler H (1980) The distribution of abscisic acid between
chloroplasts and cytoplasm of leaf cells and the permeability of the chloroplast envelope for abscisic acid. Z Pflanzenphysiol 97: 67-78
Hinckley TM, Ritchie GA (1970) Within-crown patterns of transpiration, water stress,
and stomatal activity in Abies amabilis. For Sci 16: 490-492
Hsiao TC (1973) Plant responses to water stress. Annu Rev Plant Physiol 24: 519-570
Itai C, Vaadia Y (1965) Kinetin-like activity in root exudate of water-stressed sunflower
plants. Physiol Plant 18: 941-944
Itai C, Vaadia Y (1971) Cytokinin activity in water-stressed shoots. Plant Physiol 47:
87-90
201
Cowan IR, Farquhar GO (1977) Stomatal function in relation to leaf metabolism and
environment. Symp Soc Exp Bioi 31: 471-505
Cregg BM, Hennessey TC, Dougherty PM (1990) Water relations of loblolly pine trees in
southeastern Oklahoma (USA) following precommercial thinning. Can J For Res 20:
1508-1513
Davenport TL, Jordan WR, Morgan PW (1977) Movement and endogenous levels of
abscisic acid during water-stress-induced abscission in cotton seedlings. Plant Physiol
59: 1165-1168
Davies WJ, Metcalfe J, Lodge TA, da Costa AR (1986) Plant growth substances and the
regulation of growth under drought. Aust 1 Plant Physiol 13: 105-125
De Silva DLR, Hetherington AM, Mansfield TA (1985) Synergism between calcium ions
and abscisic acid in preventing stomatal opening. New Phytol 100: 473-482
Dixon HH (1914) Transpiration and the ascent of sap in plants. Macmillan, London
Field CB, Holbrook NM (1989) Catastrophic xylem failure: tree life at the brink. TREE
4: 124-125
Fischer RA, Hsiao TC, Hagan RM (1970) After-effect of water stress on stomatal
opening potential. J Exp Bot 21: 371-385
FuBeder A, Wartinger A, Hartung W, Schulze E-D, Heilmeier H (1992) Cytokinin in the
xylem sap of desert grown almond (Prunus dulcis) trees: daily courses and their
possible interactions with abscisic acid and leaf conductance. New Phytol 122: 45-52
Gates DM (1976) Energy exchange and transpiration. In: Lange OL, Kappen L, Schulze
E-D (eds) Water and plant life. Ecological Studies, vol 19. Springer, Berlin Heidelberg
New York pp 137-147
Glinka Z, Reinhold L (1971) Abscisic acid raises the permeability of plant cells to water.
Plant Physiol 48: 103-105
Gollan T, Turner NC, Schulze E-D (1985) The responses of stomata and leaf gas
exchange to vapour pressure deficits and soil water content. Oecologia 65: 356-362
Gollan T, Passioura 1B, Munns R (1986) Soil water status affects the stomatal conductance of fully turgid wheat and sunflower leaves. Aust J Plant Physiol 13: 459-464
Gollan T, Davies W1, Schurr U, Zhang J (1989) Control of gas exchange: evidence for
root-shoot communication on drying soil. Ann Sci For 46: 393s-400s
Gollan T, Schurr U, Schulze E-D (1992) Stomatal response to drying soil in relation to
changes in the xylem sap composition of Helianthus annuus. I. The concentration of
cations, anions, amino acids in, and pH of, the xylem sap. Plant Cell Environ 15:
551-559
Gowing D1G, Davies WJ, Jones HG (1990) A positive root-sourced signal as an indicator
of soil drying in apple, Malus x domestica Borkh. J Exp Bot 41: 1535-1540
Hall AE, Schulze E-D, Lange OL (1976) Current perspectives of steady-state stomatal
responses to environment. In: Lange OL, Kappen L, Schulze E-D (eds) Water and
plant life. Ecological Studies, vol 19. Springer, Berlin Heidelberg New York, pp
169-188
Hartung W (1977) Der Transport von [2_14C] Abscisinsaure aus dem Wurzelsystem
intakter Bohnenkeimlinge in die oberirdischen Teile der Pflanze. Z Pflanzenphysiol 83:
81-84
Heckenberger U (1993) Stomatareaktion auf kontrollierte Veranderungen des Xylemsaftes
mit Abscisinsaure. Diplom Thesis, Bayreuth
Heilmann B, Hartung W, Gimmler H (1980) The distribution of abscisic acid between
chloroplasts and cytoplasm of leaf cells and the permeability of the chloroplast envelope for abscisic acid. Z Pflanzenphysiol 97: 67-78
Hinckley TM, Ritchie GA (1970) Within-crown patterns of transpiration, water stress,
and stomatal activity in Abies amabilis. For Sci 16: 490-492
Hsiao TC (1973) Plant responses to water stress. Annu Rev Plant Physiol 24: 519-570
Itai C, Vaadia Y (1965) Kinetin-like activity in root exudate of water-stressed sunflower
plants. Physiol Plant 18: 941-944
Itai C, Vaadia Y (1971) Cytokinin activity in water-stressed shoots. Plant Physiol 47:
87-90
