Simulation of wheat growth using the 3D root architecture model SPACSYS: Validation and sensitivity analysis
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[1] G. G. Pohlman. Soil Science Society of America , 1940 .
[2] Peter J. Gregory,et al. Water relations of winter wheat: 2. Soil water relations , 1978, The Journal of Agricultural Science.
[3] Peter J. Gregory,et al. Water relations of winter wheat: 1. Growth of the root system , 1978, The Journal of Agricultural Science.
[4] John R. Porter,et al. A winter wheat crop simulation model without water or nutrient limitations , 1984, The Journal of Agricultural Science.
[5] P. Barraclough,et al. The growth and activity of winter wheat roots in the field: the effect of sowing date and soil type on root growth of high-yielding crops , 1984, The Journal of Agricultural Science.
[6] Jeffrey W. White,et al. Root Growth of Four Common Bean Cultivars in Relation to Drought Tolerance in Environments with Contrasting Soil Types , 1989, Experimental Agriculture.
[7] I. R. Johnson,et al. Plant and Crop Modelling: A Mathematical Approach to Plant and Crop Physiology , 1990 .
[8] G. T. Varney,et al. The branch roots of Zea. II. Developmental loss of the apical meristem in field‐grown roots , 1991 .
[9] W. Wilhelm,et al. Simulating winter wheat shoot apex phenology , 1992, The Journal of Agricultural Science.
[10] Chun Jong Un. Variations in rate of leaf emergence, initiation of ear primordium, stem elongation and heading time as affected by vernalization duration of barley with differing growth habits , 1993 .
[11] D. Robinson. The responses of plants to non-uniform supplies of nutrients. , 1994, The New phytologist.
[12] H. Nguyen,et al. Use of wax-petrolatum layers for screening rice root penetration , 1995 .
[13] J. T. Douglas,et al. Parameter selection and testing the soil water model SOIL , 1997 .
[14] I. Bingham,et al. Site, Scale and Time-course for Adjustments in Lateral Root Initiation in Wheat Following Changes in C and N Supply , 1997 .
[15] Daniel C. Bowman,et al. Root Archutecture Affects Nitrate Leaching from Bentgrass Turf , 1998 .
[16] J. Porter,et al. Making sense of wheat development: a critique of methodology , 1998 .
[17] Parameter selection and testing the soil nitrogen dynamics model SOILN , 1998 .
[18] J. Porter,et al. Temperatures and the growth and development of wheat: a review , 1999 .
[19] A. Price,et al. A combined RFLP and AFLP linkage map of upland rice (Oryza sativa L.) used to identify QTLs for root-penetration ability , 2000, Theoretical and Applied Genetics.
[20] I. Bingham,et al. The management of wheat, barley, and oat root systems , 2001 .
[21] R. Sylvester-Bradley,et al. Availability of nitrogen after fertilizer applications to cereals , 2001, The Journal of Agricultural Science.
[22] L. J. Clark,et al. Root penetration of strong soil in rainfed lowland rice: comparison of laboratory screens with field performance , 2002 .
[23] H. Griffiths,et al. Linking drought-resistance mechanisms to drought avoidance in upland rice using a QTL approach: progress and new opportunities to integrate stomatal and mesophyll responses. , 2002, Journal of experimental botany.
[24] S. Polasky,et al. Agricultural sustainability and intensive production practices , 2002, Nature.
[25] V. Dunbabin,et al. Is there an optimal root architecture for nitrate capture in leaching environments? , 2003, Plant, cell & environment.
[26] Roger Sylvester-Bradley,et al. Modelling cereal root systems for water and nitrogen capture: towards an economic optimum. , 2003, Annals of botany.
[27] Nereu Augusto Streck,et al. A Generalized Vernalization Response Function for Winter Wheat , 2003 .
[28] A. Diggle,et al. Simulating form and function of root systems: efficiency of nitrate uptake is dependent on root system architecture and the spatial and temporal variability of nitrate supply , 2004 .
[29] A. Diggle,et al. Simulation of field data by a basic three-dimensional model of interactive root growth , 2002, Plant and Soil.
[30] A. G. Bengough,et al. Morphological plasticity of wheat and barley roots in response to spatial variation in soil strength , 2003, Plant and Soil.
[31] A. G. Bengough,et al. Gel observation chamber for rapid screening of root traits in cereal seedlings , 2004, Plant and Soil.
[32] S. S. Clair,et al. Mineral stress: the missing link in understanding how global climate change will affect plants in real world soils , 2004 .
[33] W. Horst,et al. Root growth and nitrate utilization of maize cultivars under field conditions , 1994, Plant and Soil.
[34] Xiaolong Yan,et al. Genetic mapping of basal root gravitropism and phosphorus acquisition efficiency in common bean. , 2004, Functional plant biology : FPB.
[35] J. Hopmans,et al. Transient three-dimensional modeling of soil water and solute transport with simultaneous root growth, root water and nutrient uptake , 1998, Plant and Soil.
[36] H. Kage. Is low rooting density of faba beans a cause of high residual nitrate content of soil at harvest ? , 1997, Plant and Soil.
[37] J. Lynch,et al. Root architectural tradeoffs for water and phosphorus acquisition. , 2005, Functional plant biology : FPB.
[38] J. Palta,et al. Root characteristics of vigorous wheat improve early nitrogen uptake , 2006 .
[39] L. Pagès,et al. A simulation model of the three-dimensional architecture of the maize root system , 1989, Plant and Soil.
[40] M. Faville,et al. Genotypic variation in patterns of root distribution, nitrate interception and response to moisture stress of a perennial ryegrass (Lolium perenne L.) mapping population , 2007 .
[41] Lianhai Wu,et al. SPACSYS: Integration of a 3D root architecture component to carbon, nitrogen and water cycling—Model description , 2007 .
[42] Vm Dunbabin,et al. Simulating the role of rooting traits in crop-weed competition , 2007 .
[43] Pete Smith,et al. Environmental Modelling: An Introduction , 2007 .
[44] Henning Kage,et al. Comparing different approaches to calculate the effects of heterogeneous root distribution on nutrient uptake: a case study on subsoil nitrate uptake by a barley root system , 2007, Plant and Soil.
[45] J. Lynch. Rhizoeconomics: The Roots of Shoot Growth Limitations , 2007 .
[46] P. Peltonen-Sainio,et al. Accumulation and Translocation of Nitrogen in Spring Cereal Cultivars Differing in Nitrogen Use Efficiency , 2007 .
[47] W. R. Whalley,et al. Prediction of the penetrometer resistance of soils with models with few parameters , 2007 .
[48] J. G. Dubrovsky,et al. Determinate root growth and meristem maintenance in angiosperms. , 2007, Annals of botany.