Root water uptake is a major process controlling water balance and accounts for about 60% of global terrestrial evapotranspiration. The root system employs different strategies to better exploit available soil water, however, the regulation of water uptake under the spatiotemporal heterogeneous and uneven distribution of soil water is still a major question. To tackle this question, we need to understand how plants cope with this heterogeneity by adjustment of above ground responses to partial rhizosphere drying. Therefore, we use R-SWMS simulating soil water flow, flow towards the roots, and radial and the axial flow inside the root system to perform numerical experiments on a 9-cell gridded rhizotrone (50 cm×50 cm). The water potentials i...
The magnitude and distribution of root water uptake is controlled by the distribution of soil, rhizo...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
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...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
Water uptake by plant roots is a complex mechanism controlled by biological and physical properties ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
Water transport from soil to root, driven by the plant transpiration, is an important component of t...
In our experiments, we monitored in 2D the evolution of soil water content around roots of transpiri...
Simulations of plant water uptake in soil science are based on the interplay between soil and root p...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
The magnitude and distribution of root water uptake is controlled by the distribution of soil, rhizo...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
Plant transpiration is the main component of terrestrial evapotranspiration and represents about 60%...
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...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
Water uptake by plant roots is a complex mechanism controlled by biological and physical properties ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
Water transport from soil to root, driven by the plant transpiration, is an important component of t...
In our experiments, we monitored in 2D the evolution of soil water content around roots of transpiri...
Simulations of plant water uptake in soil science are based on the interplay between soil and root p...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
The magnitude and distribution of root water uptake is controlled by the distribution of soil, rhizo...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...