Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubule dynamics exhibit such a phenotype constitutively. Although the activity of the corresponding microtubule regulators is better understood at the molecular level, how large-scale twisting can emerge in the mutants remains largely unknown. Classically, oblique cortical microtubules would constrain the deposition of cellulose microfibrils in cells, and such conflicts at the cell level would be relaxed at the tissue scale by supracellular torsion. This model implicitly assumes that cell-cell adhesion is a key step to transpose local mechanical conflicts into a macroscopic twisting phenotype. Here we tested this prediction using the quasimodo1 m...
SummaryComplex shapes in biology depend on the ability of cells to shift from isotropic to anisotrop...
<div><p>Τhe bidirectional relationship between cortical microtubule orientation and cell wall struct...
Τhe bidirectional relationship between cortical microtubule orientation and cell wall structure has ...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Several factors regulate plant organ growth polarity. tortifolia2 (tor2), a right-handed helical gro...
Several factors regulate plant organ growth polarity. tortifolia2 (tor2), a right-handed helical gro...
International audienceMechanical forces have emerged as coordinating signals for most cell functions...
SummaryThe parallel alignment of stiff cellulose microfibrils in plant-cell walls mediates anisotrop...
International audienceThe parallel alignment of stiff cellulose microfibrils in plant-cell walls med...
The control of the directionality of cell expansion was investigated using a class of eight genes, t...
International audienceGrowth variability generates mechanical conflicts in tissues. In plants, corti...
SummaryComplex shapes in biology depend on the ability of cells to shift from isotropic to anisotrop...
<div><p>Τhe bidirectional relationship between cortical microtubule orientation and cell wall struct...
Τhe bidirectional relationship between cortical microtubule orientation and cell wall structure has ...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Many plants grow organs and tissues with twisted shapes. Arabidopsis mutants with impaired microtubu...
Several factors regulate plant organ growth polarity. tortifolia2 (tor2), a right-handed helical gro...
Several factors regulate plant organ growth polarity. tortifolia2 (tor2), a right-handed helical gro...
International audienceMechanical forces have emerged as coordinating signals for most cell functions...
SummaryThe parallel alignment of stiff cellulose microfibrils in plant-cell walls mediates anisotrop...
International audienceThe parallel alignment of stiff cellulose microfibrils in plant-cell walls med...
The control of the directionality of cell expansion was investigated using a class of eight genes, t...
International audienceGrowth variability generates mechanical conflicts in tissues. In plants, corti...
SummaryComplex shapes in biology depend on the ability of cells to shift from isotropic to anisotrop...
<div><p>Τhe bidirectional relationship between cortical microtubule orientation and cell wall struct...
Τhe bidirectional relationship between cortical microtubule orientation and cell wall structure has ...