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Journal ArticleDOI

Bacterial motility on a surface: many ways to a common goal.

Rasika M. Harshey
- 28 Nov 2003 - 
- Vol. 57, Iss: 1, pp 249-273
TLDR
This review focuses mainly on surface motility and makes comparisons to features shared by other surface phenomenon.
Abstract
When free-living bacteria colonize biotic or abiotic surfaces, the resultant changes in physiology and morphology have important consequences on their growth, development, and survival. Surface motility, biofilm formation, fruiting body development, and host invasion are some of the manifestations of functional responses to surface colonization. Bacteria may sense the growth surface either directly through physical contact or indirectly by sensing the proximity of fellow bacteria. Extracellular signals that elicit new gene expression include autoinducers, amino acids, peptides, proteins, and carbohydrates. This review focuses mainly on surface motility and makes comparisons to features shared by other surface phenomenon.

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Citations
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Growing Bacillus subtilis tendrils sense and avoid each other

TL;DR: Growing tendrils of aflagellate hag mutants of Bacillus subtilis were found to show an avoidance response when colonizing a semi-solid medium, suggesting a tip-to-tip communication mechanism between colonies.
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Amino acids as wetting agents: surface translocation by Porphyromonas gingivalis.

TL;DR: It is reported that the oral anaerobe Porphyromonas gingivalis strain 381 can surface translocate when sandwiched between two surfaces and that movement requires modification of the surrounding environment via proteolysis, cell dispersion, cell-on-cell rolling, and sub-diffusive cell-driven motility.
Journal ArticleDOI

Cultural optimization and metal effects of Shewanella xiamenensis BC01 growth and swarming motility

TL;DR: This study evaluates the impact of cultivation methods and metal ions on the activity of S. xiamenensis BC01 and provides an alternative to bioremediation of heavy metal-containing wastewaters by utilizing this strain.
Journal ArticleDOI

Surfactin restores and enhances swarming motility under heavy metal stress.

TL;DR: It is suggested that surfactin can aid in motility not only by reducing the surface tension of swarming medium but also by binding to metal ions in the presence of metal ions stress.
References
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Book

Escherichia coli and Salmonella :cellular and molecular biology

TL;DR: The Enteric Bacterial Cell and the Age of Bacteria Variations on a Theme by Escherichia is described.
Journal ArticleDOI

Quorum Sensing in Bacteria

TL;DR: The evolution of quorum sensing systems in bacteria could, therefore, have been one of the early steps in the development of multicellularity.
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Biofilm Formation as Microbial Development

TL;DR: The results reviewed in this article indicate that the formation of biofilms serves as a new model system for the study of microbial development.
Journal ArticleDOI

Biofilms as complex differentiated communities.

TL;DR: It is submitted that complex cell-cell interactions within prokaryotic communities are an ancient characteristic, the development of which was facilitated by the localization of cells at surfaces, which may have provided the protective niche in which attached cells could create a localized homeostatic environment.
Journal ArticleDOI

Flagellar and twitching motility are necessary for Pseudomonas aeruginosa biofilm development

TL;DR: The isolation and characterization of mutants of Pseudomonas aeruginosa PA14 defective in the initiation of biofilm formation on an abiotic surface, polyvinylchloride (PVC) plastic are reported and evidence that microcolonies form by aggregation of cells present in the monolayer is presented.
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