The chemotaxis pathway of Escherichia coli is the most studied sensory system in prokaryotes. The highly conserved general architecture of this pathway consists of two modules which mediate signal transduction and adaptation. The signal transduction module detects and amplifies changes in environmental conditions and rapidly transmits these signals to control bacterial swimming behavior. The adaptation module gradually resets the activity and sensitivity of the first module after initial stimulation and thereby enables the temporal comparisons necessary for bacterial chemotaxis. Recent experimental and theoretical work has unraveled multiple quantitative features emerging from the interplay between these two modules. This has laid the groun...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
Background The ability to predict the function and structure of complex molecular mechanisms unde...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavio...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria use chemotaxis signaling pathways to sense environmental changes. Escherichia coli chemotax...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacterial chemotaxis is a useful model for investigating in molecular detail the behavioral response...
Chemotaxis allows flagellated bacteria to navigate in complex chemical environments, following nutri...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
Background The ability to predict the function and structure of complex molecular mechanisms unde...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavio...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria use chemotaxis signaling pathways to sense environmental changes. Escherichia coli chemotax...
Bacteria use chemotaxis to migrate towards environments that are better for growth. Chemoreceptors d...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacterial chemotaxis is a useful model for investigating in molecular detail the behavioral response...
Chemotaxis allows flagellated bacteria to navigate in complex chemical environments, following nutri...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...