Effects of soil compaction and moisture regime on the root and shoot growth and phosphorus uptake of barley plants growing on soils with varying phosphorus status

被引:54
作者
Kristoffersen, AO [1 ]
Riley, H
机构
[1] Norwegian Crop Res Inst, Apelsvoll Res Ctr, NO-2849 Kapp, Norway
[2] Norwegian Crop Res Inst, Apelsvoll Res Ctr, Div Kise, NO-2350 Nes Pa Hedmark, Norway
关键词
P-AL; plant available P in soil; P uptake; root length; soil compactness;
D O I
10.1007/s10705-005-0240-8
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The effects of soil compaction state and level of water supply on plant growth and phosphorus (P) uptake were studied in a pot experiment with spring barley (Hordeum vulgare L.). Three soils (loamy, clay loam and silt texture) were used, each with three levels of plant available P in soil (low, medium and high P-AL). The soils were compacted to two levels, 75 and 90% of the standard degree of compactness attained with free drainage under a load of 200 kPa, and they were maintained at two levels of water supply (20 and 30% mass wetness). Total root length (RL) was 59% lower at the higher of the two compactness levels, mainly due to fewer roots with diameter < 0.5 mm. However, both shoot growth and plant P uptake were reduced a lesser degree then RL. This means that 69% more shoot dry-matter (DM) per unit RL was produced in the compacted soil, and that the P uptake per unit RL was 75% higher in the more compacted soil. Thus, the plants must have compensated for reduced RL by increasing their uptake of water and nutrients per unit RL, although this did not fully compensate for the reduced RL. The effects of moisture regime on shoot growth varied between the different soils. On the clay loam soil, there was a significant yield increase with high water supply at alt three soil P-AL levels. The same was true on the loam soil at medium and high soil P-AL levels. On the silt soil, the high level of water supply increased yield by 62%, but only at the highest soil P-AL level. The plants grown on the silt soil at low and medium levels of plant available P showed marked symptoms of P deficiency throughout the growth period.
引用
收藏
页码:135 / 146
页数:12
相关论文
共 57 条
[1]   PHOSPHORUS APPLICATION RATE AND DISTRIBUTION IN THE SOIL AND PHOSPHORUS UPTAKE BY CORN [J].
ANGHINONI, I ;
BARBER, SA .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1980, 44 (05) :1041-1044
[2]   Nutrient uptake and growth of barley as affected by soil compaction [J].
Arvidsson, J .
PLANT AND SOIL, 1999, 208 (01) :9-19
[3]  
Barber S. A., 1995, Soil nutrient bioavailability: A mechanistic approach, P414
[4]  
BENNIE ATP, 1996, PLANT ROOTS HIDDEN H, P111
[5]  
BOONE FR, 1982, NETH J AGR SCI, V30, P179
[6]   Root distribution and morphology of maize seedlings as affected by tillage and fertilizer placement [J].
Chassot, A ;
Stamp, P ;
Richner, W .
PLANT AND SOIL, 2001, 231 (01) :123-135
[7]   Mineralization of soil organic P induced by drying and rewetting as a source of plant-available P in limed and unlimed samples of an acid soil [J].
Chepkwony, CK ;
Haynes, RJ ;
Swift, RS ;
Harrison, R .
PLANT AND SOIL, 2001, 234 (01) :83-90
[8]   EFFECTS OF SOIL BULK-DENSITY AND WATER REGIMEN ON ROOT-GROWTH AND UPTAKE OF PHOSPHORUS BY RYEGRASS [J].
CORNISH, PS ;
SO, HB ;
MCWILLIAM, JR .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 1984, 35 (05) :631-644
[9]   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
[10]  
EGNER HANS, 1960, KUNGL LANTBRUKSHOGSKOLANS ANN, V26, P199