Roots regulate ion transport in the rhizosphere to counteract reduced mobility in dry soil

被引:53
作者
Liebersbach, H [1 ]
Steingrobe, B [1 ]
Claassen, N [1 ]
机构
[1] Univ Gottingen, Inst Agr Chem, D-37075 Gottingen, Germany
关键词
diffusion; high molecular exudates; low molecular exudates; oat; plant nutrition; simulation model; soil moisture content; sugar beet;
D O I
10.1023/B:PLSO.0000030191.92338.6a
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Diffusion of ions in the soil depends on soil moisture content. In a dry soil, transport of nutrients towards the root and the concomitant uptake could be reduced. However, pot and field experiments showed that this is not always the case. The objective of this paper was to investigate possible mechanisms of plants to counteract reduced nutrient supply due to water shortage. A split root system was used to investigate P and K inflow of oat and sugar beet at different soil moisture contents (Theta) without water shortage for the plant. The measured average P and K inflows were compared to model calculations considering diffusion, mass-flow, sorption and uptake processes. In the calculations, soil dryness impeded diffusion and decreased nutrient inflow as expected. Measured K inflow was decreased in a similar way indicating that Theta influences K diffusion. In contrast to this, measured P inflow was not influenced by Theta and under-estimated by the model. Low and high molecular exudates were collected at different water supply levels showing that exudation rate of both compounds was increased at water shortage. Especially the high molecular exudates (i.e. mainly mucilage) from water-stressed plants increased P concentration in soil solution under dry conditions in an incubation experiment. Calculated inflow considering this increased P concentration agreed well with measured P inflow indicating that exudation of mucilage could be a mechanism to overcome nutrient transport problems due to soil dryness.
引用
收藏
页码:79 / 88
页数:10
相关论文
共 38 条
[1]   A COMPARISON OF COLUMN-DISPLACEMENT AND CENTRIFUGE METHODS FOR OBTAINING SOIL SOLUTIONS [J].
ADAMS, F ;
BURMESTER, C ;
HUE, NV ;
LONG, FL .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1980, 44 (04) :733-735
[2]  
Beissner L., 1997, MOBILISIERUNG PHOSPH
[3]   IMPEDANCE FACTOR FOR CHLORIDE DIFFUSION IN SOIL AS AFFECTED BY BULK-DENSITY AND WATER-CONTENT [J].
BHADORIA, PBS ;
KASELOWSKY, J ;
CLAASSEN, N ;
JUNGK, A .
ZEITSCHRIFT FUR PFLANZENERNAHRUNG UND BODENKUNDE, 1991, 154 (01) :69-72
[4]   Phosphorus efficiency of wheat and sugar beet seedlings grown in soils with mainly calcium, or iron and aluminium phosphate [J].
Bhadoria, PS ;
Steingrobe, B ;
Claassen, N ;
Liebersbach, H .
PLANT AND SOIL, 2002, 246 (01) :41-52
[5]   POSSIBILITY OF PREDICTING SOLUTE UPTAKE AND PLANT-GROWTH RESPONSE FROM INDEPENDENTLY MEASURED SOIL AND PLANT CHARACTERISTICS .5. GROWTH AND PHOSPHORUS UPTAKE OF RAPE IN SOIL AT A RANGE OF PHOSPHORUS CONCENTRATIONS AND A COMPARISON OF RESULTS WITH PREDICTIONS OF A SIMULATION-MODEL [J].
BREWSTER, JL ;
BHAT, KKS ;
NYE, PH .
PLANT AND SOIL, 1976, 44 (02) :295-328
[6]  
CAMPBELL R, 1990, RHIZOSPHERE
[7]  
Claassen N., 1999, Mineral nutrition of crops: fundamental mechanisms and implications., P327
[8]   VERIFICATION OF A MATHEMATICAL-MODEL BY SIMULATING POTASSIUM UPTAKE FROM SOIL [J].
CLAASSEN, N ;
SYRING, KM ;
JUNGK, A .
PLANT AND SOIL, 1986, 95 (02) :209-220
[9]   Wetting and drying cycles in the maize rhizosphere under controlled conditions. Mechanics of the root-adhering soil [J].
Czarnes, S ;
Dexter, AR ;
Bartoli, F .
PLANT AND SOIL, 2000, 221 (02) :253-271
[10]   INFLUENCE OF SOIL-WATER CONTENT ON UPTAKE OF IONS BY ROOTS .3. PHOSPHATE, POTASSIUM, CALCIUM AND MAGNESIUM UPTAKE AND CONCENTRATION GRADIENTS IN SOIL [J].
DUNHAM, RJ ;
NYE, PH .
JOURNAL OF APPLIED ECOLOGY, 1976, 13 (03) :967-984