International audienceTo grow straight, plants need a motor system that controls posture by generating forces to offset gravity. This motor function in trees was long thought to be only controlled by internal forces induced in wood. Here we provide evidence that bark is involved in the generation of mechanical stresses in several tree species. Saplings of nine tropical species were grown tilted and staked in a shadehouse and the change in curvature of the stem was measured after releasing from the pole and after removing the bark. This first experiment evidenced the contribution of bark in the up-righting movement of tree stems. Combined mechanical measurements of released strains on adult trees and microstructural observations in both tran...
International audienceThis work aims to model the mechanical processes used by tree branches to cont...
Longitudinal growth strains develop in woody tissues during cell-wall formation. This study compares...
Mechanical signals are important factors that control plants growth and development. External mechan...
To grow straight, plants need a motor system that controls posture by generating forces to offset gr...
International audienceTo grow straight, plants need a motor system that controls posture by generati...
Recent studies have shown that the inner bark is implicated in the postural control of inclined tree...
Recent studies have shown that the inner bark is implicated in the postural control of inclined tree...
International audienceRecent works revealed that bark is able to produce mechanical stress to contro...
International audienceAbstractKey messageGravitropic movements in angiosperm woody stems are achieve...
International audienceThe main biological function of reaction wood is to act as “muscle” for trees,...
International audienceThe main biological function of reaction wood is to act as “muscle” for trees,...
The mechanisms that lead to prestresses (usually called "growth stresses") in wood of growing trees ...
International audienceThe level of stresses of tension wood changes during the gravitropic movement....
International audienceLiving wood in the tree performs a muscular action by generating forces at sap...
International audienceThis work aims to model the mechanical processes used by tree branches to cont...
Longitudinal growth strains develop in woody tissues during cell-wall formation. This study compares...
Mechanical signals are important factors that control plants growth and development. External mechan...
To grow straight, plants need a motor system that controls posture by generating forces to offset gr...
International audienceTo grow straight, plants need a motor system that controls posture by generati...
Recent studies have shown that the inner bark is implicated in the postural control of inclined tree...
Recent studies have shown that the inner bark is implicated in the postural control of inclined tree...
International audienceRecent works revealed that bark is able to produce mechanical stress to contro...
International audienceAbstractKey messageGravitropic movements in angiosperm woody stems are achieve...
International audienceThe main biological function of reaction wood is to act as “muscle” for trees,...
International audienceThe main biological function of reaction wood is to act as “muscle” for trees,...
The mechanisms that lead to prestresses (usually called "growth stresses") in wood of growing trees ...
International audienceThe level of stresses of tension wood changes during the gravitropic movement....
International audienceLiving wood in the tree performs a muscular action by generating forces at sap...
International audienceThis work aims to model the mechanical processes used by tree branches to cont...
Longitudinal growth strains develop in woody tissues during cell-wall formation. This study compares...
Mechanical signals are important factors that control plants growth and development. External mechan...