To control morphogenesis, molecular regulatory networks have to interfere with the mechanical properties of the individual cells of developing organs and tissues, but how this is achieved is not well known. We study this issue here in the shoot meristem of higher plants, a group of undifferentiated cells where complex changes in growth rates and directions lead to the continuous formation of new organs [1, 2]. Here, we show that the plant hormone auxin plays an important role in this process via a dual, local effect on the extracellular matrix, the cell wall, which determines cell shape. Our study reveals that auxin not only causes a limited reduction in wall stiffness but also directly interferes with wall anisotropy via the regulation of ...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
International audienceTo control morphogenesis, molecular regulatory networks have to interfere with...
International audienceThe great complexity and plasticity of aerial plant shapes largely results fro...
International audienceThe shoot apical meristem of higher plants continuously generates new tissues ...
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...
<div><p>How instructive signals are translated into robust and predictable changes in growth is a ce...
The prominent and evolutionary ancient effect of the plant hormone auxin is the regulation of cell e...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
International audienceTo control morphogenesis, molecular regulatory networks have to interfere with...
International audienceThe great complexity and plasticity of aerial plant shapes largely results fro...
International audienceThe shoot apical meristem of higher plants continuously generates new tissues ...
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...
<div><p>How instructive signals are translated into robust and predictable changes in growth is a ce...
The prominent and evolutionary ancient effect of the plant hormone auxin is the regulation of cell e...
How instructive signals are translated into robust and predictable changes in growth is a central qu...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...