<p><strong>Water relations in the soil-plant system: what can we learn from functional-structural plant models</strong></p> <p>Water movement in the plant is driven by water potential differences between the atmosphere, the shoot, the roots and the surrounding soil. At the shoot level, the plant tightly regulates the total water demand through the regulation of stomata. At the root system level, continuous interactions between heterogeneous (in time and space) soil and root hydraulic properties influence the amount of water entering the plant.</p> <p>At the root scale, hydraulic properties are defined by anatomical (e.g. presence of endodermis, number of xylem poles) and functional features (e.g. expression of aquaporins). At the plant scal...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
<p>We present here a new model, PlaNet-Maize, which encompasses the entire soil-plant-atmosphere con...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
<div> <div> <div> <p>Water flow in the soil-plant-atmosphere continuum (SPAC) is con- trolled by a h...
tWe present here a new model, PlaNet-Maize, with the purpose of investigating the effect of environm...
How plant adapt their hydraulic conductance under heterogeneous and dynamics environment is a key tr...
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 flow in the soil-plant-atmosphere continuum is controlled by a handful of key features. On the...
We present here a new model, PlaNet-Maize, which encompasses the entire soil-plant-atmosphere contin...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
<p>We present here a new model, PlaNet-Maize, which encompasses the entire soil-plant-atmosphere con...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
Water potential explains water transport in the Soil-Plant-Atmosphere Continuum (SPAC), and is gaini...
<div> <div> <div> <p>Water flow in the soil-plant-atmosphere continuum (SPAC) is con- trolled by a h...
tWe present here a new model, PlaNet-Maize, with the purpose of investigating the effect of environm...
How plant adapt their hydraulic conductance under heterogeneous and dynamics environment is a key tr...
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 flow in the soil-plant-atmosphere continuum is controlled by a handful of key features. On the...
We present here a new model, PlaNet-Maize, which encompasses the entire soil-plant-atmosphere contin...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
peer reviewedWater potential explains water transport in the soil-plant-atmosphere continuum (SPAC),...
<p>We present here a new model, PlaNet-Maize, which encompasses the entire soil-plant-atmosphere con...