Internal Coordination of Plant Responses to Drought and Evaporational Demand
203
Milburn JA, Johnson RPC (1966) The conduction of sap. II. Detection of vibrations
produced by sap cavitation in Ricinus xylem. Plant a 66: 43-52
Munns R, King RW (1988) Abscisic acid is not the only stomatal inhibitor in the
transpiration stream of wheat plants. Plant Physiol 88: 703-708
Passioura JB (1988) Root signals control leaf expansion in wheat seedlings growing in
drying soil. Aust J Plant Physiol 15: 687-693
Prochazka S (1982) Translocation of 14C-abscisic acid from roots into the aboveground
part of pea (Pisum sativum L.) seedlings. Bioi Plant 24: 53-56
Rivier L, Leonard JF, Cottier JP (1983) Rapid effect of osmotic stress on the control and
exodiffusion of abscisic acid in Zea mays roots. Plant Sci Lett 31: 133-137
Robertson JM, Pharis RP, Huang YY, Reid DM, Yeung EC (1985) Drought-induced
increases in abscisic acid levels in the root apex of sunflower. Plant Physiol 79: 1086-1089
Rosa LM, Dillenburg LR, Forseth IN (1991) Responses of soybean leaf angle, photosynthesis and stomatal conductance to leaf and soil water potential. Ann Bot 67: 51-58
Saab IN, Sharp RE (1989) Non-hydraulic signals from maize roots in drying soil: inhibition of leaf elongation but not stomatal conductance. Plant a 179: 466-474
Schulze E-D (1986) Carbon dioxide and water vapor exchange in response to drought in
the atmosphere and in the soil. Annu Rev Plant Physiol 37: 247-274
Schulze E-D (1993) The regulation of transpiration: Interactions of feedforeward,
feedback and futile cycles. In: Schulze E-D (ed) Flux control in biologial systems; from
the
enzyme to the population and ecosystem level. Academic Press (in press)
Schulze E-D, 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) Physiological plant ecology II. Encycl Plant Phys, NS 12B. Springer, Berlin
Heidelberg New York, pp 181-230
Schulze E-D, Kiippers M (1979) Short-term and long-term effects of plant water deficits
on stomatal response to humidity in Corylus avellana L. Planta 146: 319-326
Schurr U (1992a) 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
Schurr U (1992b) Die Wirkung von Bodenaustrocknung auf den Xylem- und Phloemtransport von Ricinus communis und deren Bedeutung fUr die Interaktion zwischen
Wurzel und SproB. Doktorarbeit, Bayreuth
Schurr U, Gollan T, Schulze E-D (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
Sperry JS (1986) Relationship of xylem embolism to xylem pressure potential, stomatal
closure, and shoot morphology in the palm Rhapis excelsa. Plant Physiol 80: 110116
SHUfelt MG (1956) Die stomatare Transpiration und die Physiologie der Spalt6ffnungen.
In: Ruhland W (ed) Handbuch der Pflanzenphysiologie, Bd 3. Springer, Berlin
G6ttingen Heidelberg, pp 351-426
Steinberg SL, McFarland MS, Worthington JW (1990) Comparison of trunk and branch
sap flow with canopy transpiration in pecan. J Exp Bot 41: 653-659
Steudle E (1993) The regulation of plant water at the cell, tissue and organ level: role of
active processes and of compartimentation. In: Schulze E-D (ed) Flux control in
biological systems; from the enzyme to the popUlation and ecosystem level. Academic
Press (in press)
Turner NC, Schulze E-D, Gollan T (1985) The responses of stomata and leaf gas
exchange to vapour pressure deficits and soil water content. II. In the mesophytic
herbaceous species Helianthus annuus. Oecologia 65: 348-355
Tyree MT, Dixon MA (1983) Cavitation events in Thuja occidentalis L. Ultrasonic
acoustic emissions from the sapwood can be measured. Plant Physiol 72: 1094-1099
Tyree MT, Sperry JS (1989) Vulnerability of xylem to cavitation and embolism. Annu
Rev Plant Physiol Mol Bioi 40: 19-38
203
Milburn JA, Johnson RPC (1966) The conduction of sap. II. Detection of vibrations
produced by sap cavitation in Ricinus xylem. Plant a 66: 43-52
Munns R, King RW (1988) Abscisic acid is not the only stomatal inhibitor in the
transpiration stream of wheat plants. Plant Physiol 88: 703-708
Passioura JB (1988) Root signals control leaf expansion in wheat seedlings growing in
drying soil. Aust J Plant Physiol 15: 687-693
Prochazka S (1982) Translocation of 14C-abscisic acid from roots into the aboveground
part of pea (Pisum sativum L.) seedlings. Bioi Plant 24: 53-56
Rivier L, Leonard JF, Cottier JP (1983) Rapid effect of osmotic stress on the control and
exodiffusion of abscisic acid in Zea mays roots. Plant Sci Lett 31: 133-137
Robertson JM, Pharis RP, Huang YY, Reid DM, Yeung EC (1985) Drought-induced
increases in abscisic acid levels in the root apex of sunflower. Plant Physiol 79: 1086-1089
Rosa LM, Dillenburg LR, Forseth IN (1991) Responses of soybean leaf angle, photosynthesis and stomatal conductance to leaf and soil water potential. Ann Bot 67: 51-58
Saab IN, Sharp RE (1989) Non-hydraulic signals from maize roots in drying soil: inhibition of leaf elongation but not stomatal conductance. Plant a 179: 466-474
Schulze E-D (1986) Carbon dioxide and water vapor exchange in response to drought in
the atmosphere and in the soil. Annu Rev Plant Physiol 37: 247-274
Schulze E-D (1993) The regulation of transpiration: Interactions of feedforeward,
feedback and futile cycles. In: Schulze E-D (ed) Flux control in biologial systems; from
the
enzyme to the population and ecosystem level. Academic Press (in press)
Schulze E-D, 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) Physiological plant ecology II. Encycl Plant Phys, NS 12B. Springer, Berlin
Heidelberg New York, pp 181-230
Schulze E-D, Kiippers M (1979) Short-term and long-term effects of plant water deficits
on stomatal response to humidity in Corylus avellana L. Planta 146: 319-326
Schurr U (1992a) 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
Schurr U (1992b) Die Wirkung von Bodenaustrocknung auf den Xylem- und Phloemtransport von Ricinus communis und deren Bedeutung fUr die Interaktion zwischen
Wurzel und SproB. Doktorarbeit, Bayreuth
Schurr U, Gollan T, Schulze E-D (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
Sperry JS (1986) Relationship of xylem embolism to xylem pressure potential, stomatal
closure, and shoot morphology in the palm Rhapis excelsa. Plant Physiol 80: 110116
SHUfelt MG (1956) Die stomatare Transpiration und die Physiologie der Spalt6ffnungen.
In: Ruhland W (ed) Handbuch der Pflanzenphysiologie, Bd 3. Springer, Berlin
G6ttingen Heidelberg, pp 351-426
Steinberg SL, McFarland MS, Worthington JW (1990) Comparison of trunk and branch
sap flow with canopy transpiration in pecan. J Exp Bot 41: 653-659
Steudle E (1993) The regulation of plant water at the cell, tissue and organ level: role of
active processes and of compartimentation. In: Schulze E-D (ed) Flux control in
biological systems; from the enzyme to the popUlation and ecosystem level. Academic
Press (in press)
Turner NC, Schulze E-D, Gollan T (1985) The responses of stomata and leaf gas
exchange to vapour pressure deficits and soil water content. II. In the mesophytic
herbaceous species Helianthus annuus. Oecologia 65: 348-355
Tyree MT, Dixon MA (1983) Cavitation events in Thuja occidentalis L. Ultrasonic
acoustic emissions from the sapwood can be measured. Plant Physiol 72: 1094-1099
Tyree MT, Sperry JS (1989) Vulnerability of xylem to cavitation and embolism. Annu
Rev Plant Physiol Mol Bioi 40: 19-38
