Control of cell volume and osmolarity is central to cellular homeostasis in all eukaryotes. It lies at the heart of the century-old problem of how plants regulate turgor, mineral and water transport. Plants use strongly electrogenic H+-ATPases, and the substantial membrane voltages they foster, to drive solute accumulation and generate turgor pressure for cell expansion. Vesicle traffic adds membrane surface and contributes to wall remodelling as the cell grows. Although a balance between vesicle traffic and ion transport is essential for cell turgor and volume control, the mechanisms coordinating these processes have remained obscure. Recent discoveries have now uncovered interactions between conserved subsets of soluble N-ethylmaleimide-s...
Following the unequivocal demonstration that plants contain at least two types of vacuoles, scientis...
A few membrane vesicle trafficking (SNARE) proteins in plants are associated with signaling and tran...
Cellular elongation requires the defined coordination of intra‐ and extracellular processes, but the...
Control of cell volume and osmolarity is central to cellular homeostasis in all eukaryotes. It lies ...
Control of cell volume and osmolarity is central to cellular homeostasis in all eukaryotes. It lies ...
Eukaryotic cells expand using vesicle traffic to increase membrane surface area. Expansion in walled...
Growth in plants depends on ion transport for osmotic solute uptake and secretory membrane trafficki...
Throughout their development, plants balance cell surface area and volume with ion transport and tur...
Cell expansion requires that ion transport and secretory membrane traffic operate in concert. Eviden...
Vesicle traffic is tightly coordinated with ion transport for plant cell expansion through physical ...
SNARE (soluble N-ethylmaleimide-sensitive factor protein attachment protein receptor) proteins drive...
Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) proteins play a major ...
SNARE proteins contribute to vesicle targeting and membrane fusion in all eukaryotic cells, and are ...
The plasma membrane proton (H+)-ATPases of plants generate steep electrochemical gradients and activ...
SNARE (soluble N-ethylmaleimide-sensitive factor protein attachment protein receptor) proteins driv...
Following the unequivocal demonstration that plants contain at least two types of vacuoles, scientis...
A few membrane vesicle trafficking (SNARE) proteins in plants are associated with signaling and tran...
Cellular elongation requires the defined coordination of intra‐ and extracellular processes, but the...
Control of cell volume and osmolarity is central to cellular homeostasis in all eukaryotes. It lies ...
Control of cell volume and osmolarity is central to cellular homeostasis in all eukaryotes. It lies ...
Eukaryotic cells expand using vesicle traffic to increase membrane surface area. Expansion in walled...
Growth in plants depends on ion transport for osmotic solute uptake and secretory membrane trafficki...
Throughout their development, plants balance cell surface area and volume with ion transport and tur...
Cell expansion requires that ion transport and secretory membrane traffic operate in concert. Eviden...
Vesicle traffic is tightly coordinated with ion transport for plant cell expansion through physical ...
SNARE (soluble N-ethylmaleimide-sensitive factor protein attachment protein receptor) proteins drive...
Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) proteins play a major ...
SNARE proteins contribute to vesicle targeting and membrane fusion in all eukaryotic cells, and are ...
The plasma membrane proton (H+)-ATPases of plants generate steep electrochemical gradients and activ...
SNARE (soluble N-ethylmaleimide-sensitive factor protein attachment protein receptor) proteins driv...
Following the unequivocal demonstration that plants contain at least two types of vacuoles, scientis...
A few membrane vesicle trafficking (SNARE) proteins in plants are associated with signaling and tran...
Cellular elongation requires the defined coordination of intra‐ and extracellular processes, but the...