In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physical stimuli remains poorly understood. Here, we combine an in-vivo analysis of the pathway activity with a microfluidic taxis assay and mathematical modeling to investigate the thermotactic response of Escherichia coli. We show that in the absence of chemical attractants E. coli exhibits a steady thermophilic response, the magnitude of which decreases at higher temperatures. Adaptation of wildtype cells to high levels of chemoattractants sensed by only one of the major chemoreceptors leads to inversion of the thermotactic response at intermediate temperatures and bidirectional cell accumulation in a thermal gradient. A mathematical model can ...
Temperature is a global factor that affects the performance of all intracellular networks. Robustnes...
The chemotaxis network of the bacterium Escherichia coli is perhaps the most studied model for adapt...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
AbstractThermotaxis is the phenomenon where an organism directs its movement toward its preferred te...
Thermotaxis is the phenomenon where an organism directs its movement toward its preferred temperatur...
Escherichia coli chemotaxis has long served as a simple model of environmental signal processing, an...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
BACKGROUND: Extracellular stimuli in chemotaxis of Escherichia coli and other bacteria are processed...
Abstract Background Extracellular stimuli in chemotaxis of Escherichia coli and other bacteria are p...
SummaryTemperature is a global factor that affects the performance of all intracellular networks. Ro...
Bacterial chemotaxis, the directed migration of bacteria in a gradient of chemoattractant, is one of...
AbstractThe chemotaxis network of the bacterium Escherichia coli is perhaps the most studied model f...
In bacterial habitats, the ability to follow spatial gradients of environmental factors that affect ...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
Temperature is a global factor that affects the performance of all intracellular networks. Robustnes...
The chemotaxis network of the bacterium Escherichia coli is perhaps the most studied model for adapt...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
AbstractThermotaxis is the phenomenon where an organism directs its movement toward its preferred te...
Thermotaxis is the phenomenon where an organism directs its movement toward its preferred temperatur...
Escherichia coli chemotaxis has long served as a simple model of environmental signal processing, an...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
BACKGROUND: Extracellular stimuli in chemotaxis of Escherichia coli and other bacteria are processed...
Abstract Background Extracellular stimuli in chemotaxis of Escherichia coli and other bacteria are p...
SummaryTemperature is a global factor that affects the performance of all intracellular networks. Ro...
Bacterial chemotaxis, the directed migration of bacteria in a gradient of chemoattractant, is one of...
AbstractThe chemotaxis network of the bacterium Escherichia coli is perhaps the most studied model f...
In bacterial habitats, the ability to follow spatial gradients of environmental factors that affect ...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
Temperature is a global factor that affects the performance of all intracellular networks. Robustnes...
The chemotaxis network of the bacterium Escherichia coli is perhaps the most studied model for adapt...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...