Responses of Escherichia coli Bacteria to Two Opposing Chemoattractant Gradients Depend on the Chemoreceptor Ratio
- 1 April 2010
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 192 (7), 1796-1800
- https://doi.org/10.1128/jb.01507-09
Abstract
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 conditions, whereby it depended on the culture density but not on the growth duration. These results provide biological insights into the decision-making processes of chemotactic bacteria that are subjected to multiple chemical stimuli and demonstrate the importance of the cellular microenvironment in determining phenotypic behavior.Keywords
This publication has 20 references indexed in Scilit:
- An agarose-based microfluidic platform with a gradient buffer for 3D chemotaxis studiesBiomedical Microdevices, 2009
- Logarithmic Sensing in Escherichia coli Bacterial ChemotaxisBiophysical Journal, 2009
- Overview of Mathematical Approaches Used to Model Bacterial Chemotaxis I: The Single CellBulletin of Mathematical Biology, 2008
- Variable sizes of Escherichia coli chemoreceptor signaling teamsMolecular Systems Biology, 2008
- A concentration-dependent switch in the bacterial response to temperatureNature Cell Biology, 2007
- A hydrogel-based microfluidic device for the studies of directed cell migrationLab on a Chip, 2007
- Cooperative Signaling among Bacterial ChemoreceptorsBiochemistry, 2005
- Analysis of bacterial migration: II. Studies with multiple attractant gradientsAIChE Journal, 1995
- "Decision"-Making in Bacteria: Chemotactic Response of Escherichia coli to Conflicting StimuliScience, 1974
- Chemotaxis in Escherichia coli analysed by Three-dimensional TrackingNature, 1972