DIRECT DEMONSTRATION OF A GROWTH-INDUCED WATER POTENTIAL GRADIENT

被引:86
作者
NONAMI, H
BOYER, JS
机构
[1] UNIV DELAWARE,COLL MARINE STUDIES,LEWES,DE 19958
[2] UNIV DELAWARE,COLL AGR,LEWES,DE 19958
关键词
D O I
10.1104/pp.102.1.13
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
When transpiration is negligible, water potentials in growing tissues are less than those in mature tissues and have been predicted to form gradients that move water into the enlarging cells. To determine directly whether the gradients exist, we measured water potentials along the radius of stems of intact soybean (Glycine max [L.] Merr.) seedlings growing in vermiculite in a water-saturated atmosphere. The measurements were made in individual cells by first determining the turgor with a miniature pressure probe, then determining the osmotic potential of solution from the same cell, and finally summing the two potentials. The osmotic potentials were corrected for sample mixing in the probe. The measurements were checked with a thermocouple psychrometer that gave average tissue water potentials. In the elongating region, the water potential was highest near the xylem and lowest near the epidermis and in the center of the pith. In the basal, more mature region of the same stems, water potentials were near zero next to the xylem and throughout the tissue. These basal potentials reflected mostly the potential of the xylem, which extended into the elongating tissues. Thus, the high basal potential confirmed the high potential near the xylem in the elongating tissues. The psychrometer measurements for each tissue gave average potentials that agreed with the average of the cell potentials from the pressure probe. We conclude that a radial gradient was present in the elongating region that formed a water potential field in three dimensions around the xylem and that confirmed the predictions of Molz and Boyer (F.J. Molz and J.S. Boyer [19781 Plant Physiol 62: 423-429).
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页码:13 / 19
页数:7
相关论文
共 35 条
[1]   CONTROL OF THE RATE OF CELL ENLARGEMENT - EXCISION, WALL RELAXATION, AND GROWTH-INDUCED WATER POTENTIALS [J].
BOYER, JS ;
CAVALIERI, AJ ;
SCHULZE, ED .
PLANTA, 1985, 163 (04) :527-543
[2]   LEAF WATER POTENTIALS MEASURED WITH A PRESSURE CHAMBER [J].
BOYER, JS .
PLANT PHYSIOLOGY, 1967, 42 (01) :133-&
[3]   CELL ENLARGEMENT AND GROWTH-INDUCED WATER POTENTIALS [J].
BOYER, JS .
PHYSIOLOGIA PLANTARUM, 1988, 73 (02) :311-316
[4]   RELATIONSHIP OF WATER POTENTIAL TO GROWTH OF LEAVES [J].
BOYER, JS .
PLANT PHYSIOLOGY, 1968, 43 (07) :1056-&
[5]   WATER TRANSPORT [J].
BOYER, JS .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1985, 36 :473-516
[6]   ISOPIESTIC TECHNIQUE FOR MEASURING LEAF WATER POTENTIALS WITH A THERMOCOUPLE PSYCHROMETER [J].
BOYER, JS ;
KNIPLING, EB .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1965, 54 (04) :1044-&
[8]   WATER TRANSPORT IN PLANTS - MECHANISM OF APPARENT CHANGES IN RESISTANCE DURING ABSORPTION [J].
BOYER, JS .
PLANTA, 1974, 117 (03) :187-207
[9]  
CAVALIERI AJ, 1982, PLANT PHYSIOL, V69, P492, DOI 10.1104/pp.69.2.492
[10]   OSMOTIC PROPERTIES OF PEA INTERNODES IN RELATION TO GROWTH AND AUXIN ACTION [J].
COSGROVE, DJ ;
CLELAND, RE .
PLANT PHYSIOLOGY, 1983, 72 (02) :332-338