Cortical microtubule arrays in elongating epidermal cells in both the root and stem of plants have the propensity of dynamic reorientations that are correlated with the activation or inhibition of growth. Factors regulating plant growth, among them the hormone auxin, have been recognized as regulators of microtubule array orientations. Some previous work in the field has aimed at elucidating the causal relationship between cell growth, the signaling of auxin or other growth-regulating factors, and microtubule array reorientations, with various conclusions. Here, we revisit this problem of causality with a comprehensive set of experiments in Arabidopsis thaliana, using the now available pharmacological and genetic tools. We use isolated, aux...
International audienceTo control morphogenesis, molecular regulatory networks have to interfere with...
Hyponastic growth is an upward petiole movement induced by plants in response to various external st...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
Cortical microtubule arrays in elongating epidermal cells in both the root and stem of plants have t...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
The shoot apical meristem of higher plants continuously generates new tissues and organs through com...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
The prominent and evolutionary ancient effect of the plant hormone auxin is the regulation of cell e...
International audienceMorphogenesis during multicellular development is regulated by intercellular s...
<div><p>Τhe bidirectional relationship between cortical microtubule orientation and cell wall struct...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
SummaryBackgroundOrdered cortical microtubule (MT) arrays play a critical role in the spatial contro...
Τhe bidirectional relationship between cortical microtubule orientation and cell wall structure has ...
Directed plant cell growth is governed by deposition and alterations of cell wall components under t...
International audienceTo control morphogenesis, molecular regulatory networks have to interfere with...
Hyponastic growth is an upward petiole movement induced by plants in response to various external st...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...
Cortical microtubule arrays in elongating epidermal cells in both the root and stem of plants have t...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
The shoot apical meristem of higher plants continuously generates new tissues and organs through com...
SummaryTo control morphogenesis, molecular regulatory networks have to interfere with the mechanical...
The prominent and evolutionary ancient effect of the plant hormone auxin is the regulation of cell e...
International audienceMorphogenesis during multicellular development is regulated by intercellular s...
<div><p>Τhe bidirectional relationship between cortical microtubule orientation and cell wall struct...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
SummaryBackgroundOrdered cortical microtubule (MT) arrays play a critical role in the spatial contro...
Τhe bidirectional relationship between cortical microtubule orientation and cell wall structure has ...
Directed plant cell growth is governed by deposition and alterations of cell wall components under t...
International audienceTo control morphogenesis, molecular regulatory networks have to interfere with...
Hyponastic growth is an upward petiole movement induced by plants in response to various external st...
To control morphogenesis, molecular regulatory networks have to interfere with the mechanical proper...