International audienceTissue bending is vital to plant development, as exemplified by apical hook formation during seedling emergence by bending of the hypocotyl. How tissue bending is coordinated during development remains poorly understood, especially in plants where cells are attached via rigid cell walls. Asymmetric distribution of the plant hormone auxin underlies differential cell elongation during apical hook formation. Yet the underlying mechanism remains unclear. Here, we demonstrate spatial correlation between asymmetric auxin distribution, methylesterified homogalacturonan (HG) pectin, and mechanical properties of the epidermal layer of the hypocotyl in Arabidopsis. Genetic and cell biological approaches show that this mechanoche...
Fast directional growth is a necessity for the young seedling; after germination, it needs to quickl...
How gene activities and biomechanics together direct organ shapes is poorly understood. Plant leaf a...
Differential cell growth enables flexible organ bending in the presence of environmental signals suc...
Tissue bending is vital to plant development, as exemplified by apical hook formation during seedlin...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
<div><p>How instructive signals are translated into robust and predictable changes in growth is a ce...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
The instructive role of mechanical cues during morphogenesis is increasingly being recognized in all...
The apical hook is a transiently formed structure that plays a protective role when the germinating ...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
International audienceTissue folding is a central building block of plant and animal morphogenesis. ...
How appendages, such as plant leaves or animal limbs, develop asymmetric shapes remains a fundamenta...
The apical hook is a developmentally regulated structure that appears in dicotyledonous seedlings wh...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
Fast directional growth is a necessity for the young seedling; after germination, it needs to quickl...
How gene activities and biomechanics together direct organ shapes is poorly understood. Plant leaf a...
Differential cell growth enables flexible organ bending in the presence of environmental signals suc...
Tissue bending is vital to plant development, as exemplified by apical hook formation during seedlin...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
<div><p>How instructive signals are translated into robust and predictable changes in growth is a ce...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
The instructive role of mechanical cues during morphogenesis is increasingly being recognized in all...
The apical hook is a transiently formed structure that plays a protective role when the germinating ...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
International audienceTissue folding is a central building block of plant and animal morphogenesis. ...
How appendages, such as plant leaves or animal limbs, develop asymmetric shapes remains a fundamenta...
The apical hook is a developmentally regulated structure that appears in dicotyledonous seedlings wh...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
Fast directional growth is a necessity for the young seedling; after germination, it needs to quickl...
How gene activities and biomechanics together direct organ shapes is poorly understood. Plant leaf a...
Differential cell growth enables flexible organ bending in the presence of environmental signals suc...