Growth rate effects on fundamental transport properties of bacterial populations
β Scribed by James R. Mercer; Roseanne M. Ford; Jill L. Stitz; Clive Bradbeer
- Publisher
- John Wiley and Sons
- Year
- 1993
- Tongue
- English
- Weight
- 929 KB
- Volume
- 42
- Category
- Article
- ISSN
- 0006-3592
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β¦ Synopsis
Abstract
In many natural environments, bacterial populations experience suboptimal growth due to the competition with other microorganisms for limited resources. The chemotactic response provides a mechanism by which bacterial populations can improve their situation by migrating toward more favorable growth conditions. For bacteria cultured under suboptimal growth conditions, evidence for an enhanced chemotactic response has been observed previously. In this article, for the first time, we have quantitatively characterized this behavior in terms of two macroscopic transport coefficients, the random motility and chemotactic sensitivity coefficients, measured in the stoppedβflow diffusion chamber assay. Escherichia coli cultured over a range of growth rates in a chemostat exhibits a dramatic increase in the chemotactic sensitivity coefficient for Dβfucose at low growth rates, while the random motility coefficient remains relatively constant by comparison. The change in the chemotactic sensitivity coefficient is accounted for by an independently measured increase in the number of galactoseβbinding proteins which mediate the chemotactic signal. This result is consistent with the relationship between macroscopic and microscopic parameters for chemotaxis, which was proposed in the mathematical model of Rivero and coβworkers. Β© 1993 John Wiley & Sons, Inc.
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