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A functional–structural model of upland rice root systems reveals the importance of laterals and growing root tips for phosphate uptake from wet and dry soils

, , , , , and . Annals of Botany, 126 (4): 789-806 (2020)
DOI: 10.1093/aob/mcaa120

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Continuum multiscale model of root water and nutrient uptake from soil with explicit consideration of the 3D root architecture and the rhizosphere gradients, , , and . Plant and Soil, 439 (1-2): 273-292 (2018)A functional–structural model of upland rice root systems reveals the importance of laterals and growing root tips for phosphate uptake from wet and dry soils, , , , , and . Annals of Botany, 126 (4): 789-806 (2020)Continuum multiscale model of root water and nutrient uptake from soil with explicit consideration of the 3D root architecture and the rhizosphere gradients, , , and . Plant and Soil, 439 (1): 273-292 (2019)Call for Participation : Collaborative Benchmarking of Functional-Structural Root Architecture Models : The Case of Root Water Uptake, , , , , , , , , and 10 other author(s). Frontiers in Plant Science : Functional Plant Ecology, (2020)Root System Scale Models Significantly Overestimate Root Water Uptake at Drying Soil Conditions, , , , , and . Frontiers in Plant Science, (2022)Collaborative benchmarking of functional-structural root architecture models : Quantitative comparison of simulated root water uptake, , , , , , , , , and 10 other author(s). In silico plants, 5 (1): diad005 (2023)CPlantBox: a fully coupled modelling platform for the water and carbon fluxes in the soil–plant–atmosphere continuum, , , , , , , , , and 2 other author(s). in silico Plants, 5 (2): diad009 (2023)