Bacterial swarming: a model system for studying dynamic self-assembly
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- 3 February 2009
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Soft Matter
- Vol. 5 (6), 1174-1187
- https://doi.org/10.1039/b812146j
Abstract
Bacterial swarming is an example of dynamic self-assembly in microbiology in which the collective interaction of a population of bacterial cells leads to emergent behavior. Swarming occurs when cells interact with surfaces, reprogram their physiology and behavior, and adapt to changes in their environment by coordinating their growth and motility with other cells in the colony. This Review summarizes the salient biological and biophysical features of this system and describes our current understanding of swarming motility. We have organized this Review into four sections: (1) The biophysics and mechanisms of bacterial motility in fluids and its relevance to swarming. (2) The role of cell/molecule, cell/surface, and cell/cell interactions during swarming. (3) The changes in physiology and behavior that accompany swarming motility. (4) A concluding discussion of several interesting, unanswered questions that is particularly relevant to soft matter scientists.Keywords
This publication has 179 references indexed in Scilit:
- Bacterial chemoreceptors: high-performance signaling in networked arraysTrends in Biochemical Sciences, 2008
- The Wetting Agent Required for Swarming in Salmonella enterica Serovar Typhimurium Is Not a SurfactantJournal of Bacteriology, 2007
- Genome-Wide Screening of Genes Required for Swarming Motility inEscherichia coliK-12Journal of Bacteriology, 2007
- Salmonella typhimurium flhE, a conserved flagellar regulon gene required for swarmingMicrobiology, 2007
- The PmrA/PmrB and RcsC/YojN/RcsB systems control expression of the Salmonella O‐antigen chain length determinantMolecular Microbiology, 2006
- Construction of Escherichia coli K‐12 in‐frame, single‐gene knockout mutants: the Keio collectionMolecular Systems Biology, 2006
- FliL is a membrane-associated component of the flagellar basal body of SalmonellaMicrobiology, 1999
- THINKING ABOUT BACTERIAL POPULATIONS AS MULTICELLULAR ORGANISMSAnnual Review of Microbiology, 1998
- Normal-to-curly flagellar transitions and their role in bacterial tumbling. Stabilization of an alternative quaternary structure by mechanical forceJournal of Molecular Biology, 1977
- CELLULAR CHANGES ACCOMPANYING THE SWARMING OF PROTEUS MIRABILIS: II. OBSERVATIONS OF STAINED ORGANISMSCanadian Journal of Microbiology, 1966