Background and Aims Radial and axial hydraulic conductivities are key parameters for proper understanding and modelling of root water uptake. Despite their importance, there is limited experimental information on how the radial and axial hydraulic conductivities vary along roots growing in soil. Here, a new approach was introduced to estimate inversely the profile of hydraulic conductivities along the roots of transpiring plants growing in soil.Methods A three-dimensional model of root water uptake was used to reproduce the measured profile of root water uptake along roots of lupine plant grown in soil. The profile of fluxes was measured using a neutron radiography technique combined with injection of deuterated water as tracer. The aim was...
How is root water uptake distributed along the root system and what root properties control this dis...
Previous studies have shown similar water use for lupins [Lupinus angustifolius L.) and wheat {Triti...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
Background and Aims: Radial and axial hydraulic conductivities are key parameters for proper underst...
Improving or maintaining crop productivity under conditions of long term change of soil water availa...
Despite most macroscopic models for root water uptake considering root length density (RLD) to descr...
Soil water extraction by plant roots results from plant and soil transport processes interacting at ...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
Plant water uptake from soil is an important component of terrestrial water cycle with strong links ...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
The ability of crops to capture water from the soil depends on the root architecture and anatomical ...
Despite its importance for understanding transpiration regulation and soil water fluxes, characteriz...
Detailed three-dimensional models of root water uptake have become increasingly popular for investig...
How is root water uptake distributed along the root system and what root properties control this dis...
Previous studies have shown similar water use for lupins [Lupinus angustifolius L.) and wheat {Triti...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
Background and Aims: Radial and axial hydraulic conductivities are key parameters for proper underst...
Improving or maintaining crop productivity under conditions of long term change of soil water availa...
Despite most macroscopic models for root water uptake considering root length density (RLD) to descr...
Soil water extraction by plant roots results from plant and soil transport processes interacting at ...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
Plant water uptake from soil is an important component of terrestrial water cycle with strong links ...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
The ability of crops to capture water from the soil depends on the root architecture and anatomical ...
Despite its importance for understanding transpiration regulation and soil water fluxes, characteriz...
Detailed three-dimensional models of root water uptake have become increasingly popular for investig...
How is root water uptake distributed along the root system and what root properties control this dis...
Previous studies have shown similar water use for lupins [Lupinus angustifolius L.) and wheat {Triti...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...