Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture requires evaluation of underlying mechanisms in the soil, roots, and shoots. The feedback between plants and their local environment throughout the whole spectrum soil-root-shoot-environment is crucial to accurately describe and evaluate the impact of environmental changes on plant development. This study presents a 3D functional structural plant model, in which shoot and root growth are driven by radiative transfer, photosynthesis, and soil hydrodynamics through different parameterisation schemes relating soil water deficit and carbon assimilation. The new coupled model is used to evaluate the impact of soil moisture availability on plant p...
tWe present here a new model, PlaNet-Maize, with the purpose of investigating the effect of environm...
Uncertainty in the representation of vegetation in Earth System Models is a major contributor to the...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
BACKGROUND AND AIMS: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Abstract. Root water uptake by plants is a vital process that influences terrestrial energy, water, ...
Competition for water among multiple tree rooting systems is investigated using a soil-plant model t...
<p><strong>Water relations in the soil-plant system: what can we learn from functional-structural pl...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
The global carbon and water cycles are governed by the coupling of CO2 and water vapour exchanges th...
Stomatal regulation and whole plant hydraulic signaling affect water fluxes and stress in plants. La...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
tWe present here a new model, PlaNet-Maize, with the purpose of investigating the effect of environm...
Uncertainty in the representation of vegetation in Earth System Models is a major contributor to the...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
BACKGROUND AND AIMS: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Abstract. Root water uptake by plants is a vital process that influences terrestrial energy, water, ...
Competition for water among multiple tree rooting systems is investigated using a soil-plant model t...
<p><strong>Water relations in the soil-plant system: what can we learn from functional-structural pl...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
The global carbon and water cycles are governed by the coupling of CO2 and water vapour exchanges th...
Stomatal regulation and whole plant hydraulic signaling affect water fluxes and stress in plants. La...
Due in part to recent progress in root genetics and genomics, increasing attention is being devoted ...
tWe present here a new model, PlaNet-Maize, with the purpose of investigating the effect of environm...
Uncertainty in the representation of vegetation in Earth System Models is a major contributor to the...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...