Distribution of roots and root length density in a maize/soybean strip intercropping system
暂无分享,去创建一个
Aiwang Duan | Jingsheng Sun | Zugui Liu | Xinqiang Qiu | He-zhou Wang | A. Duan | Yang Gao | Junpeng Zhang | Hezhou Wang | Jingsheng Sun | Yang Gao | Zugui Liu | Xinqiang Qiu | Junpeng Zhang
[1] D. Tennant,et al. A test of a modified line intersect method of estimating root length , 1975 .
[2] S. Adiku,et al. Patterns of root growth and water uptake of a maize-cowpea mixture grown under greenhouse conditions , 2001, Plant and Soil.
[3] Fusuo Zhang,et al. Root distribution and interactions between intercropped species , 2006, Oecologia.
[4] P. Barraclough,et al. Effects of a compacted subsoil layer on root and shoot growth, water use and nutrient uptake of winter wheat , 1988, The Journal of Agricultural Science.
[5] D. Hillel. Environmental soil physics , 1998 .
[6] J. F. Sillon,et al. Fractal analysis of the root architecture of Gliricidia sepium for the spatial prediction of root branching, size and mass: model development and evaluation in agroforestry , 1999, Plant and Soil.
[7] J. Wallace,et al. Towards a coupled light partitioning and transpiration model for use in intercrops and agroforestry , 1995 .
[8] John Vandermeer,et al. The Ecology of Intercropping by John H. Vandermeer , 1989 .
[9] Fusuo Zhang,et al. Wheat/maize or wheat/soybean strip intercropping - I. Yield advantage and interspecific interactions on nutrients , 2001 .
[10] Peter J. Gregory,et al. Root growth in an intercrop of pearl millet/groundnut , 1982 .
[11] J. F. Sillon,et al. Modelling daily root interactions for water in a tropical shrub and grass alley cropping system , 2000, Agroforestry Systems.
[12] F. Lafolie,et al. Modelling competition for water in intercrops: theory and comparison with field experiments , 1998, Plant and Soil.
[13] P. Carberry,et al. Resource capture and use in intercropping: solar radiation , 1993 .
[14] R. W. Willey. Resource use in intercropping systems , 1990 .
[15] E. R. Page,et al. An empirical mathematical model to describe plant root systems , 1974 .
[16] R. Q. Cannell,et al. A comparison of methods, including angled and vertical minirhizotrons, for studying root growth and distribution in a spring oat crop , 1983, Plant and Soil.
[17] M. Caldwell,et al. Plant Architecture and Resource Competition , 1987 .
[18] C. Stirling,et al. Intercropping with banana to improve fractional interception and radiation-use efficiency of immature rubber plantations , 2001 .
[19] R. B. Reneau,et al. Corn Seedling Root Growth as Influenced by Soil Physical Properties1 , 1987 .
[20] J. Grace,et al. Competition for light : detection, measurement, and quantification , 1993 .
[21] M. Begon,et al. Ecology: Individuals, Populations and Communities , 1986 .
[22] W. Böhm,et al. In situ estimation of root length at natural soil profiles , 1976, The Journal of Agricultural Science.
[23] M. Awal,et al. Radiation interception and use by maize/peanut intercrop canopy , 2006 .
[24] J. R. Sims,et al. SIMPLIFIED COLORIMETRIC DETERMINATION OF SOIL ORGANIC MATTER , 1971 .
[25] W. Werf,et al. Growth, yield and quality of wheat and cotton in relay strip intercropping systems , 2007 .
[26] H. M. Taylor,et al. Use of Acrylic Plastic as Rhizotron Windows1 , 1976 .
[27] M. Tsubo,et al. Comparisons of radiation use efficiency of mono-/inter-cropping systems with different row orientations , 2001 .
[28] J. Olesen,et al. Subsoil loosening in a crop rotation for organic farming eliminated plough pan with mixed effects on crop yield , 2007 .
[29] J. Chopart,et al. Development and validation of a model to describe root length density of maize from root counts on soil profiles , 1999, Plant and Soil.
[30] Mitsuru Tsubo,et al. A MODEL OF RADIATION INTERCEPTION AND USE BY A MAIZE–BEAN INTERCROP CANOPY , 2002 .
[31] John R. Williams,et al. A general, process-oriented model for two competing plant species , 1992 .