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Dynamic aspects of the structured cell population in a swarming colony of Proteus mirabilis

T Matsuyama1, Y Takagi, Y Nakagawa

  • 1Department of Bacteriology, Niigata University School of Medicine, Niigata 951-8510, Japan. tohey@med.niigata-u.ac.jp

Journal of Bacteriology
|January 12, 2000
PubMed

Insights

Proteus mirabilis bacteria exhibit distinct cell behaviors during colony expansion, with mobile and immobile cells organizing into specific patterns. This internal structure dictates the bacteria

Area of Science:

  • Microbiology
  • Bacterial Motility
  • Colony Development

Background:

  • Proteus mirabilis forms concentric-ring colonies through periodic swarming.
  • Colony expansion involves alternating swarming and consolidation phases.

Purpose of the Study:

  • To investigate the internal population structure of Proteus mirabilis during synchronized colony expansion.
  • To understand the role of cell distribution and behavior in colony morphogenesis.

Main Methods:

  • Microscopic examination of cell distribution and mobility within expanding colonies.
  • In situ mobility assays and migration ability tests on agar.
  • Replica printing of sectorial cell populations to assess self-organization.
  • Experimental manipulation of colony patterns (cutting, mixing) to study swarming dynamics.

Main Results:

  • Distinct cell populations with differing lengths, mobility, and migration abilities were identified in swarming and consolidation phases.
  • During consolidation, mobile cells concentrated in inner ring sections, while outer cells became immobile despite retaining swimming ability.
  • Transplanted swarming fronts continued swarming, and consolidation fronts continued consolidation, indicating phase autonomy.
  • Colony patterns were modifiable by physical disruption, but consolidation fronts showed independence from internal population structure.

Conclusions:

  • Proteus mirabilis exhibits phase-specific cell differentiation and spatial organization during colony growth.
  • Colony structure is crucial for characteristic growth, with distinct roles for swarming and consolidation phases.
  • The consolidation front cells operate on an independent schedule, unaffected by the internal population structure.

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