Bacterial cell division takes place almost entirely below the diffraction limit of light microscopy, making super-resolution microscopy ideally suited to interrogating this process. I review how super-resolution microscopy has advanced our understanding of bacterial cell division. I discuss the mechanistic implications of these findings, propose physical models for cell division compatible with recent data, and discuss key outstanding questions and future research directions
Probably one of the most controversial questions about the cell division of rod-shaped bacteria conc...
Super-resolution microscopy is increasingly becoming an important tool for biological research, prov...
Bacterial cell division is a fundamental process mediated by a large collection of proteins, collect...
We review different super-resolution microscopy approaches used by microbiologists to investigate b...
Schermelleh L, Ferrand A, Huser T, et al. Super-resolution microscopy demystified. NATURE CELL BIOLO...
All cells spatially organize their interiors, and this arrangement is necessary for cell viability. ...
International audienceFluorescence microscopy has become a ubiquitous method to observe the location...
The molecular mechanisms that drive bacterial cytokinesis are attractive antibiotic targets that rem...
The last three decades have witnessed an explosion of discoveries about the mechanistic details of b...
We have employed a combination of super-resolution microscopy techniques to explore the spatial redi...
Investigation of cell membrane structure and dynamics requires high spatial and temporal resolution....
Bacterial Physiology was inaugurated as a discipline by the seminal research of Maaløe, Schaechter a...
Advances in microscopy and cell biology are intimately intertwined, with new visualization possibili...
Anyone who has used a light microscope has wished that its resolution could be a little better. Now,...
Ability to demonstrate clearly the sequence of events during division by observing live cells might ...
Probably one of the most controversial questions about the cell division of rod-shaped bacteria conc...
Super-resolution microscopy is increasingly becoming an important tool for biological research, prov...
Bacterial cell division is a fundamental process mediated by a large collection of proteins, collect...
We review different super-resolution microscopy approaches used by microbiologists to investigate b...
Schermelleh L, Ferrand A, Huser T, et al. Super-resolution microscopy demystified. NATURE CELL BIOLO...
All cells spatially organize their interiors, and this arrangement is necessary for cell viability. ...
International audienceFluorescence microscopy has become a ubiquitous method to observe the location...
The molecular mechanisms that drive bacterial cytokinesis are attractive antibiotic targets that rem...
The last three decades have witnessed an explosion of discoveries about the mechanistic details of b...
We have employed a combination of super-resolution microscopy techniques to explore the spatial redi...
Investigation of cell membrane structure and dynamics requires high spatial and temporal resolution....
Bacterial Physiology was inaugurated as a discipline by the seminal research of Maaløe, Schaechter a...
Advances in microscopy and cell biology are intimately intertwined, with new visualization possibili...
Anyone who has used a light microscope has wished that its resolution could be a little better. Now,...
Ability to demonstrate clearly the sequence of events during division by observing live cells might ...
Probably one of the most controversial questions about the cell division of rod-shaped bacteria conc...
Super-resolution microscopy is increasingly becoming an important tool for biological research, prov...
Bacterial cell division is a fundamental process mediated by a large collection of proteins, collect...