SummaryWalled cells have the ability to remodel their shape while sustaining an internal turgor pressure that can reach values up to 10 atmospheres [1–7]. Although it is undisputed that this requires a tight and simultaneous regulation of cell wall assembly and mechanics, previous theoretical studies on tip growth focused either on the mechanical behavior of the cell wall or on its assembly [8–14]. To study the interplay between growth and mechanics in shaping a walled cell, we examine the particularly simple geometry of tip-growing cells [1, 3, 15, 16], which elongate via the assembly and expansion of cell wall in the apical region of the cell. We describe the observed irreversible expansion of the cell wall during growth as the extension ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...
SummaryWalled cells have the ability to remodel their shape while sustaining an internal turgor pres...
SummaryThe shape of walled cells such as fungi, bacteria, and plants are determined by the cell wall...
Cells in nature develop in a wide range of forms, following diverse growth patterns. Despite the im...
Cells in nature develop in a wide range of forms, following diverse growth patterns. Despite the im...
SummaryThe shape of walled cells such as fungi, bacteria, and plants are determined by the cell wall...
Tip growth has been studied in pollen tubes, root hairs, and fungal and oomycete hyphae and is the m...
The growth of plant organs is a complex process powered by osmosis that attracts water inside the ce...
Tip growth has been studied in pollen tubes, root hairs, and fungal and oomycete hyphae and is the m...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...
SummaryWalled cells have the ability to remodel their shape while sustaining an internal turgor pres...
SummaryThe shape of walled cells such as fungi, bacteria, and plants are determined by the cell wall...
Cells in nature develop in a wide range of forms, following diverse growth patterns. Despite the im...
Cells in nature develop in a wide range of forms, following diverse growth patterns. Despite the im...
SummaryThe shape of walled cells such as fungi, bacteria, and plants are determined by the cell wall...
Tip growth has been studied in pollen tubes, root hairs, and fungal and oomycete hyphae and is the m...
The growth of plant organs is a complex process powered by osmosis that attracts water inside the ce...
Tip growth has been studied in pollen tubes, root hairs, and fungal and oomycete hyphae and is the m...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
The mechanisms through which plant cells control growth and shape are the result of the coordinated ...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...
International audienceHyphal tip growth allows filamentous fungi to colonize space, reproduce, or in...