Functional–structural root-system models simulate the relations between root-system architectural and hydraulic properties, and the spatio-temporal distributions of water and solutes in the root zone. Such models may help identify optimal plant properties for breeding and contribute to increased water-use efficiency. However, it must first be demonstrated that they accurately reproduce the processes they intend to describe. This is challenging because the flow and transport processes towards individual roots are hard to observe. In this study, we demonstrate how this problem can be addressed by combining co-registered root and tracer distributions obtained from magnetic resonance imaging with a root-system model in an inverse modeling schem...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Water uptake of plant roots is monitored using non-invasive imaging by nuclear Magnetic Resonance Im...
Functional–structural root-system models simulate the relations between root-system architectural an...
The root system is the plant’s organ that has the important function of taking up water and plant nu...
peer reviewedFunctional-structural root system models simulate the relations between root system arc...
Water flow from soil to root is driven by the plant transpiration and an important component of the ...
Despite its importance for understanding transpiration regulation and soil water fluxes, characteriz...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
For the first time, a functional-structural root-system model is validated by combining a tracer exp...
Many environmental and agricultural challenges rely on the proper understanding of water ow and solu...
Differential uptake of water and solutes by plant roots generates heterogeneous concentration distri...
Many environmental and agricultural challenges rely on the proper understanding of water flow and so...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Water uptake of plant roots is monitored using non-invasive imaging by nuclear Magnetic Resonance Im...
Functional–structural root-system models simulate the relations between root-system architectural an...
The root system is the plant’s organ that has the important function of taking up water and plant nu...
peer reviewedFunctional-structural root system models simulate the relations between root system arc...
Water flow from soil to root is driven by the plant transpiration and an important component of the ...
Despite its importance for understanding transpiration regulation and soil water fluxes, characteriz...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
For the first time, a functional-structural root-system model is validated by combining a tracer exp...
Many environmental and agricultural challenges rely on the proper understanding of water ow and solu...
Differential uptake of water and solutes by plant roots generates heterogeneous concentration distri...
Many environmental and agricultural challenges rely on the proper understanding of water flow and so...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Root growth and water uptake processes in the subsurface are hard to observe due to the opaque natur...
Water uptake of plant roots is monitored using non-invasive imaging by nuclear Magnetic Resonance Im...