Due in part to recent progress in root genetics and genomics, increasing attention is being devoted to root system architecture (RSA) for the improvement of drought tolerance. The focus is generally set on deep roots, expected to improve access to soil water resources during water deficit episodes. Surprisingly, our quantitative understanding of the role of RSA in the uptake of soil water remains extremely limited, which is mainly due to the inherent complexity of the soil-plant continuum. Evidently, there is a need for plant biologists and hydrologists to develop together their understanding of water movement in the soil-plant system. Using recent quantitative models coupling the hydraulic behaviour of soil and roots in an explicit 3D fram...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...
tDrought stress is a dominant constraint to crop production. Breeding crops with adapted root system...
Soil water extraction by plant roots results from plant and soil transport processes interacting at ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
The magnitude and distribution of root water uptake is controlled by the distribution of soil, rhizo...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
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 ...
3D models of root growth, architecture and function are evolving as they become important tools that...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
<div> <div> <div> <p>Water flow in the soil-plant-atmosphere continuum (SPAC) is con- trolled by a h...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...
tDrought stress is a dominant constraint to crop production. Breeding crops with adapted root system...
Soil water extraction by plant roots results from plant and soil transport processes interacting at ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
The magnitude and distribution of root water uptake is controlled by the distribution of soil, rhizo...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
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 ...
3D models of root growth, architecture and function are evolving as they become important tools that...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
<div> <div> <div> <p>Water flow in the soil-plant-atmosphere continuum (SPAC) is con- trolled by a h...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...
tDrought stress is a dominant constraint to crop production. Breeding crops with adapted root system...
Soil water extraction by plant roots results from plant and soil transport processes interacting at ...