Radiation interception, partitioning and use in grass clover mixtures

被引:60
作者
Faurie, O [1 ]
Soussana, JF [1 ]
Sinoquet, H [1 ]
机构
[1] INRA, PIAF, F-63039 CLERMONT FERRAND, FRANCE
关键词
light interception; radiation transfer model; growth analysis; radiation use efficiency; grassland; white clover; perennial ryegrass; Trifolium repens L; Lolium perenne L;
D O I
10.1006/anbo.1996.0005
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Mixed swards of perennial ryegrass/white clover were grown in competition under controlled environmental conditions, at two temperatures and with different inorganic nitrogen supplies. The swards were studied after canopy closure, from 800 to 1200 degrees C d cumulative temperatures. Clover contents did not vary significantly during the period. A simulation model of light interception was used to calculate light partitioning coefficients and radiation use efficiencies for both components of the mixture in this controlled environment experiment. Additionally, this same radiative transfer model was applied to the field data from Woledge (1988) (Annals of Applied Biology 112: 175-186) and from Woledge, Davidson and Dennis (1992) (Grass and Forage Science 47: 230-238). The measured and simulated values of light transmission, at different depths in the mixed canopy, were highly correlated (P < 0.001) with more than 80% of the total variance explained. The daily average of photosynthetically active radiation (PAR) interception in a natural environment was estimated from simulations, for the field and controlled environment data. Under these conditions, white clover captured significantly more light per unit leaf area than perennial ryegrass at low, but not at high, nitrogen supply. In the controlled environment experiment, the radiation use efficiency of the legume was lower than that of its companion grass. For both species, radiation use efficiency was negatively correlated with the mean irradiance of the leaf. The role of a compensation between light interception and light use for stabilizing the botanical composition of dense grass-clover swards is discussed. (C) 1996 Annals of Botany Company
引用
收藏
页码:35 / 45
页数:11
相关论文
共 39 条
[31]  
VARLETGRANCHER C, 1979, ANN AGRON, V30, P1
[32]  
VARLETGRANCHER C, 1975, ANN AGRON, V26, P245
[33]  
VARLETGRANCHER C, 1989, 16 INT GRASSL C NIC, V1, P477
[34]   RESOURCE USE IN INTERCROPPING SYSTEMS [J].
WILLEY, RW .
AGRICULTURAL WATER MANAGEMENT, 1990, 17 (1-3) :215-231
[35]  
WILSON J. W., 1959, New Phytologist, V58, P92, DOI 10.1111/j.1469-8137.1959.tb05340.x
[36]  
WILSON WJ, 1963, AUSTR J BOTANY, V11, P95, DOI DOI 10.1071/BT9630095
[38]   GROWTH AND PHOTOSYNTHESIS OF TALL AND SHORT CULTIVARS OF WHITE CLOVER WITH TALL AND SHORT GRASSES [J].
WOLEDGE, J ;
DAVIDSON, K ;
DENNIS, WD .
GRASS AND FORAGE SCIENCE, 1992, 47 (03) :230-238
[39]  
WOLEDGE J, 1984, ADV PHOTOSYNTHESIS R, V4, P149