Escherichia coli chemotaxis has long served as a simple model of environmental signal processing, and bacterial responses to single chemical gradients are relatively well understood. Less is known about the chemotactic behavior of E. coli in multiple chemical gradients. In their native environment, cells are often exposed to multiple chemical stimuli. Using a recently developed microfluidic chemotaxis device, we exposed E. coli cells to two opposing but equally potent gradients of major attractants, methyl-aspartate and serine. The responses of E. coli cells demonstrated that chemotactic decisions depended on the ratio of the respective receptor number of Tar/Tsr. In addition, the ratio of Tar to Tsr was found to vary with cells' growth con...
Many microorganisms have evolved chemotactic strategies to exploit the microscale heterogeneity that...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavio...
In bacterial habitats, the ability to follow spatial gradients of environmental factors that affect ...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
We formulate an agent-based population model of Escherichia coli cells which incorporates a descript...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
International audienceEvolution of biological sensory systems is driven by the need for efficient re...
Simulation of cellular behavior on multiple scales requires models that are sufficiently detailed to...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
We studied the response of swimming Escherichia coli(E. coli) bacteria in a comprehensive set of wel...
AbstractWe studied the response of swimming Escherichia coli (E. coli) bacteria in a comprehensive s...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Many microorganisms have evolved chemotactic strategies to exploit the microscale heterogeneity that...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavio...
In bacterial habitats, the ability to follow spatial gradients of environmental factors that affect ...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
We formulate an agent-based population model of Escherichia coli cells which incorporates a descript...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
In bacteria various tactic responses are mediated by the same cellular pathway, but sensing of physi...
International audienceEvolution of biological sensory systems is driven by the need for efficient re...
Simulation of cellular behavior on multiple scales requires models that are sufficiently detailed to...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
We studied the response of swimming Escherichia coli(E. coli) bacteria in a comprehensive set of wel...
AbstractWe studied the response of swimming Escherichia coli (E. coli) bacteria in a comprehensive s...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Many microorganisms have evolved chemotactic strategies to exploit the microscale heterogeneity that...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavio...