Water uptake by roots: effects of water deficit.
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[1] Emanuel Adler,et al. Library of Congress Cataloging-in-Publication Data , 2018, Indianizing Film.
[2] E. Steudle,et al. Transport and metabolic degradation of hydrogen peroxide in Chara corallina: model calculations and measurements with the pressure probe suggest transport of H(2)O(2) across water channels. , 2000, Journal of experimental botany.
[3] Ernst Steudle,et al. Abscisic acid and hydraulic conductivity of maize roots: a study using cell- and root-pressure probes , 2000, Planta.
[4] E. Steudle,et al. Reply...water ascent in plants. , 2000 .
[5] E. Steudle,et al. Radial hydraulic conductivity along developing onion roots. , 2000, Journal of experimental botany.
[6] E. Steudle,et al. Apoplastic transport of abscisic acid through roots of maize: effect of the exodermis , 2000, Planta.
[7] E. Steudle,et al. Chemical composition of apoplastic transport barriers in relation to radial hydraulic conductivity of corn roots (Zea mays L.) , 2000, Planta.
[8] E. Steudle,et al. Direct measurement of xylem pressure in leaves of intact maize plants. A test of the cohesion-tension theory taking hydraulic architecture into consideration , 1999, Plant physiology.
[9] E. Steudle,et al. Diurnal variations in hydraulic conductivity and root pressure can be correlated with the expression of putative aquaporins in the roots of Lotus japonicus , 1999, Planta.
[10] E. Steudle,et al. Water ascent in plants: do ongoing controversies have a sound basis? , 1999, Trends in plant science.
[11] Larsson,et al. Aquaporins and water homeostasis in plants. , 1999, Trends in plant science.
[12] L. Schreiber,et al. Apoplastic barriers in roots: chemical composition of endodermal and hypodermal cell walls , 1999 .
[13] S. Tyerman,et al. Inhibition of water channels by HgCl2 in intact wheat root cells , 1999, Plant physiology.
[14] A. D. Tomos,et al. THE PRESSURE PROBE: A Versatile Tool in Plant Cell Physiology. , 1999, Annual review of plant physiology and plant molecular biology.
[15] H. Bohnert,et al. Plant aquaporins: Their molecular biology, biophysics and significance for plant water relations , 1999 .
[16] Mark Rieger,et al. Root system hydraulic conductivity in species with contrasting root anatomy , 1999 .
[17] Ernst Steudle,et al. Water uptake by roots of maize and sunflower affects the radial transport of abscisic acid and its concentration in the xylem , 1998, Planta.
[18] P. Melcher. Short communication. Comparative measurements of xylem pressure in transpiring and non-transpiring leaves by means of the pressure chamber and the xylem pressure probe , 1998 .
[19] L. Schreiber,et al. Comparative investigation of primary and tertiary endodermal cell walls isolated from the roots of five monocotyledoneous species: chemical composition in relation to fine structure , 1998, Planta.
[20] E. Steudle,et al. Apoplastic transport across young maize roots: effect of the exodermis , 1998, Planta.
[21] E. Steudle,et al. How does water get through roots , 1998 .
[22] H. Jones. Stomatal control of photosynthesis and transpiration , 1998 .
[23] A. Schäffner. Aquaporin function, structure, and expression: are there more surprises to surface in water relations? , 1998, Planta.
[24] H. Rennenberg,et al. Trees - Contributions to Modern Tree Physiology , 1997 .
[25] S. Tyerman,et al. Water channels in Chara corallina , 1997 .
[26] E. Steudle. WATER TRANSPORT ACROSS PLANT TISSUE : ROLE OF WATER CHANNELS , 1997 .
[27] E. Steudle,et al. The function of water channels in Chara: The temperature dependence of water and solute flows provides evidence for composite membrane transport and for a slippage of small organic solutes across water channels , 1997, Planta.
[28] C. Maurel. AQUAPORINS AND WATER PERMEABILITY OF PLANT MEMBRANES. , 1997, Annual review of plant physiology and plant molecular biology.
[29] C. Larsson,et al. The major integral proteins of spinach leaf plasma membranes are putative aquaporins and are phosphorylated in response to Ca2+ and apoplastic water potential. , 1996, The Plant cell.
[30] A. B. Meshcheryakov,et al. Hydraulic and osmotic properties of oak roots , 1996 .
[31] E. Steudle. Trees under tension , 1995, Nature.
[32] E. Steudle,et al. Water channels in plants: do basic concepts of water transport change? , 1995 .
[33] P. Nobel,et al. Hydraulic conductivity of concentric root tissues of Agave deserti Engelm. under wet and drying conditions , 1995 .
[34] E. Steudle,et al. Reversible closing of water channels in Chara internodes provides evidence for a composite transport model of the plasma membrane , 1995 .
[35] E. Schulze,et al. Hydraulic and osmotic properties of spruce roots , 1994 .
[36] C. Maurel,et al. Aquaporins: The Molecular Basis of Facilitated Water Movement Through Living Plant Cells? , 1994, Plant physiology.
[37] R. Skinner,et al. The effect of phosphorus nutrition on water flow through the apoplastic bypass in cotton roots , 1994 .
[38] Melvin T. Tyree,et al. Hydraulic architecture of Acer saccharum and A. rubrum: comparison of branches to whole trees and the contribution of leaves to hydraulic resistance , 1994 .
[39] E. Steudle,et al. Transport of Water and Solutes across Maize Roots Modified by Puncturing the Endodermis (Further Evidence for the Composite Transport Model of the Root) , 1993, Plant physiology.
[40] E. Steudle,et al. Water Transport in Onion (Allium cepa L.) Roots (Changes of Axial and Radial Hydraulic Conductivities during Root Development) , 1993, Plant physiology.
[41] E. Steudle,et al. Effects of NaCl and CaCl(2) on Water Transport across Root Cells of Maize (Zea mays L.) Seedlings. , 1992, Plant physiology.
[42] R. T. Cruz,et al. Structural Changes and Associated Reduction of Hydraulic Conductance in Roots of Sorghum bicolor L. following Exposure to Water Deficit. , 1992, Plant physiology.
[43] E. Steudle,et al. Effects of Salinity on Water Transport of Excised Maize (Zea mays L.) Roots. , 1991, Plant physiology.
[44] Park S. Nobel,et al. CHANGES IN HYDRAULIC CONDUCTIVITY AND ANATOMY CAUSED BY DRYING AND REWETTING ROOTS OF AGAVE DESERTI (AGAVACEAE) , 1991 .
[45] C. Peterson,et al. The effects of drought and subsequent rehydration on the structure and vitality of Zea mays seedling roots , 1991 .
[46] Park S. Nobel,et al. Physicochemical and Environmental Plant Physiology , 1991 .
[47] E. Steudle,et al. Axial and Radial Hydraulic Resistance to Roots of Maize (Zea mays L.). , 1989, Plant physiology.
[48] E. Steudle,et al. The Osmometer Model of the Root: Water and Solute Relations of Roots of Phaseolus coccineus , 1989 .
[49] J. Sperry,et al. Do woody plants operate near the point of catastrophic xylem dysfunction caused by dynamic water stress? : answers from a model. , 1988, Plant physiology.
[50] E. Steudle,et al. An artificial osmotic cell: a model system for simulating osmotic processes and for studying phenomena of negative pressure in plants , 1988 .
[51] E. Schulze,et al. Water transport in maize roots : measurement of hydraulic conductivity, solute permeability, and of reflection coefficients of excised roots using the root pressure probe. , 1987, Plant physiology.
[52] E. Steudle,et al. Water transport in the midrib tissue of maize leaves : direct measurement of the propagation of changes in cell turgor across a plant tissue. , 1985, Plant physiology.
[53] J. Radin,et al. Hydraulic conductance as a factor limiting leaf expansion of phosphorus-deficient cotton plants. , 1984, Plant physiology.
[54] F. Molz,et al. Mathematical treatment of water movement in plant cells and tissue: a review , 1982 .
[55] C. Peterson,et al. Pathway of movement of apoplastic fluorescent dye tracers through the endodermis at the site of secondary root formation in corn (Zea mays) and broad bean (Vicia faba) , 1981 .
[56] E. Fiscus. The Interaction between Osmotic- and Pressure-induced Water Flow in Plant Roots. , 1975, Plant physiology.
[57] R. Brouwer. THE REGULATING INFLUENCE OF TRANSPIRATION AND SUCTION TENSION ON THE WATER AND SALT UPTAKE BY THE ROOTS OF INTACT VICIA FABA PLANTS , 1954 .
[58] E. Steudle,et al. Root hydraulic conductance: diurnal aquaporin expression and the effects of nutrient stress. , 2000, Journal of experimental botany.
[59] María Lucía Garcés Ferreira,et al. Sorghum bicolor L.) , 1999 .
[60] W. Hartung. Abscisic Acid—A Hormonal Long-Distance Stress Signal in Plants Under Drought and Salt Stress , 1999 .
[61] E. Taleisnik,et al. Water Retention Capacity in Root Segments Differing in the Degree of Exodermis Development , 1999 .
[62] H. Tigier,et al. Salinity effects on hydraulic conductance, lignin content and peroxidase activity in tomato roots , 1997 .
[63] E. Steudle,et al. Water transport across tree roots , 1995 .
[64] E. Steudle. The Biophysics of Plant Water: Compartmentation, Coupling with Metabolic Processes, and Flow of Water in Plant Roots , 1992 .
[65] E. Steudle,et al. Water Transport across Maize Roots : Simultaneous Measurement of Flows at the Cell and Root Level by Double Pressure Probe Technique. , 1991, Plant physiology.
[66] E. Steudle. [16] Water flow in plants and its coupling to other processes: An overview , 1989 .
[67] M. Matthews,et al. Water transport properties of cortical cells in roots of nitrogen- and phosphorus-deficient cotton seedlings. , 1989, Plant physiology.
[68] J. Passioura,et al. Water Transport in and to Roots , 1988 .
[69] Ernst-Detlef Schulze,et al. Carbon Dioxide and Water Vapor Exchange in Response to Drought in the Atmosphere and in the Soil , 1986 .
[70] P. Hanson,et al. Quantifying Apoplastic Flux through Red Pine Root Systems Using Trisodium, 3-hydroxy-5,8,10-pyrenetrisulfonate. , 1985, Plant physiology.
[71] D. Miller,et al. Studies of Root Function in Zea mays: III. Xylem Sap Composition at Maximum Root Pressure Provides Evidence of Active Transport into the Xylem and a Measurement of the Reflection Coefficient of the Root. , 1985, Plant physiology.
[72] R. Munns,et al. Hydraulic resistance of plants. III. Effects of NaCl in barley and lupin , 1984 .
[73] I. R. Cowan. Stomatal Behaviour and Environment , 1978 .
[74] C. W. Brush. Effects of drought , 1901 .