Improving or maintaining crop productivity under conditions of long term change of soil water availability and atmosphere demand for water is one the big challenges of this century. It requires a deep understanding of crop water acquisition properties, i.e. root system architecture and root hydraulic properties among other characteristics of the soil-plant-atmosphere continuum. A root pressure probe technique was used to measure the root hydraulic conductances of seven-week old maize and lupine plants grown in sandy soil. Unbranched root segments were excised in lateral, seminal, crown and brace roots of maize, and in lateral roots of lupine. Their total hydraulic conductance was quantified under steady-state hydrostatic gradient for progre...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with un...
The ability of plants to take up water from the soil depends on both the root architecture and the d...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...
Improving or maintaining crop productivity under conditions of long term change of soil water availa...
Background and Aims Radial and axial hydraulic conductivities are key parameters for proper understa...
Under hydroponic culture conditions, we studied the relationship between two different types of root...
Root pressure probes have been widely employed to measure the hydraulic properties of roots from var...
The definitive version is available at www.blackwell-synergy.comHydrostatic pressure relaxations wit...
The ability of crops to capture water from the soil depends on the root architecture and anatomical ...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
Root hydraulic properties play a central role in the global water cycle, agricultural systems produc...
Rates at which water can be transported along plant roots (axial pathway) vary through time, in part...
Previous studies have shown similar water use for lupins [Lupinus angustifolius L.) and wheat {Triti...
The ability of plants to take up water from the soil depends on both the root architecture and the d...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with un...
The ability of plants to take up water from the soil depends on both the root architecture and the d...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...
Improving or maintaining crop productivity under conditions of long term change of soil water availa...
Background and Aims Radial and axial hydraulic conductivities are key parameters for proper understa...
Under hydroponic culture conditions, we studied the relationship between two different types of root...
Root pressure probes have been widely employed to measure the hydraulic properties of roots from var...
The definitive version is available at www.blackwell-synergy.comHydrostatic pressure relaxations wit...
The ability of crops to capture water from the soil depends on the root architecture and anatomical ...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with uni...
Root hydraulic properties play a central role in the global water cycle, agricultural systems produc...
Rates at which water can be transported along plant roots (axial pathway) vary through time, in part...
Previous studies have shown similar water use for lupins [Lupinus angustifolius L.) and wheat {Triti...
The ability of plants to take up water from the soil depends on both the root architecture and the d...
In 1978, Landsberg and Fowkes presented a solution of the water flow equation inside a root with un...
The ability of plants to take up water from the soil depends on both the root architecture and the d...
For plants and especially for maize (Zea mays), experiencing water deficit at key phenological stage...