Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and nutrient uptake and decreased yield. In this study, the biomechanical responses of roots to axial mechanical forces were assessed by combining 3D live imaging, kinematics and a novel mechanical sensor. This system quantified Young's elastic modulus of intact poplar roots (32MPa), a rapid <0.2 mN touch-elongation sensitivity, and the critical elongation force applied by growing roots that resulted in bending. Kinematic analysis revealed a multiphase bio-mechanical response of elongation rate and curvature in 3D. Measured critical elongation force was accurately predicted from an Euler buckling model, indicating that no biologically mediate...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
Root distribution determines largely the zone of soil that roots have access to for water and nutrie...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Plant root growth is dramatically reduced in compacted soils, affecting the growth of the whole plan...
Plant root growth is dramatically reduced in compacted soils, affecting the growth of the whole plan...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
Root distribution determines largely the zone of soil that roots have access to for water and nutrie...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Strong regions and physical barriers in soils may slow root elongation, leading to reduced water and...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Limitation to root growth results from forces required to overcome soil resistance to deformation. T...
Plant root growth is dramatically reduced in compacted soils, affecting the growth of the whole plan...
Plant root growth is dramatically reduced in compacted soils, affecting the growth of the whole plan...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
The influence of the soil on the growth of a root system has been largely investigated. By contrast,...
Root distribution determines largely the zone of soil that roots have access to for water and nutrie...