204
R. Losch and E.-D. Schulze
Ullmann I (1985) Tagesgiinge von Transpiration und stomatiirer Leitfiihigkeit sahelischer
und saharischer Akazien in der Trockenzeit. Flora 176: 383-409
Waring RH, Schroeder PE, Oren R (1982) Application of the pipe model theory to
predict canopy leaf area. Can J For Res 12: 556-560
Wartinger A, Heilmeier H, Hartung W, Schulze E-D (1990) Daily and seasonal course of
leaf conductance and abscisic acid in the xylem sap of almond trees (Prunus dulcis
(Miller) D.A. Webb) under desert conditions. New Phytol 116:581-587
Wolf 0, Jeschke WD, Hartung W (1990) Long-distance transport of abscisic acid in NaCltreated intact plant of Lupinus albus. J Exp Bot 41: 593-600
Wright STC, Hiron RWP (1969) (+ )-abscisic acid, the growth inhibitor in detached wheat
leaves following a period of wilting. Nature 224: 719-720
Zhang J, Davies·WJ (1987) Increased synthesis of ABA in partially dehydrated root tips
and ABA transport from roots to leaves. J Exp Bot 38: 2015-2023
Zhang J, Davies WJ (1989a) Sequential response of whole plant water relations to
prolonged soil drying and the involvement of xylem sap ABA in the regulation of
stomatal behaviour of sunflower plants. New Phytol 113: 167-174
Zhang J, Davies WJ (1989b) Abscisic acid produced in dehydrating roots may enable the
plant to measure the water status of the soil. Plant Cell Environ 12: 73-81
Zhang J, Davies WJ (1990) Does ABA in the xylem control the rate of leaf growth in soildried maize and sunflower plants? J Exp Bot 41: 1125-1132
Zhang J, Schurr U, Davies WJ (1987) Control of stomatal behaviour by abscisic acid
which apparently originates in the roots. J Exp Bot 38: 1174-1181
R. Losch and E.-D. Schulze
Ullmann I (1985) Tagesgiinge von Transpiration und stomatiirer Leitfiihigkeit sahelischer
und saharischer Akazien in der Trockenzeit. Flora 176: 383-409
Waring RH, Schroeder PE, Oren R (1982) Application of the pipe model theory to
predict canopy leaf area. Can J For Res 12: 556-560
Wartinger A, Heilmeier H, Hartung W, Schulze E-D (1990) Daily and seasonal course of
leaf conductance and abscisic acid in the xylem sap of almond trees (Prunus dulcis
(Miller) D.A. Webb) under desert conditions. New Phytol 116:581-587
Wolf 0, Jeschke WD, Hartung W (1990) Long-distance transport of abscisic acid in NaCltreated intact plant of Lupinus albus. J Exp Bot 41: 593-600
Wright STC, Hiron RWP (1969) (+ )-abscisic acid, the growth inhibitor in detached wheat
leaves following a period of wilting. Nature 224: 719-720
Zhang J, Davies·WJ (1987) Increased synthesis of ABA in partially dehydrated root tips
and ABA transport from roots to leaves. J Exp Bot 38: 2015-2023
Zhang J, Davies WJ (1989a) Sequential response of whole plant water relations to
prolonged soil drying and the involvement of xylem sap ABA in the regulation of
stomatal behaviour of sunflower plants. New Phytol 113: 167-174
Zhang J, Davies WJ (1989b) Abscisic acid produced in dehydrating roots may enable the
plant to measure the water status of the soil. Plant Cell Environ 12: 73-81
Zhang J, Davies WJ (1990) Does ABA in the xylem control the rate of leaf growth in soildried maize and sunflower plants? J Exp Bot 41: 1125-1132
Zhang J, Schurr U, Davies WJ (1987) Control of stomatal behaviour by abscisic acid
which apparently originates in the roots. J Exp Bot 38: 1174-1181
