Swarming ring patterns in bacterial colonies exposed to ultraviolet radiation
arXiv:cond-mat/0101018 · doi:10.1103/PhysRevLett.87.158102
Abstract
We report a novel morphological transition in a Bacillus subtilis colony initially growing under ambient conditions, after ultraviolet radiation exposure. The bacteria in the central regions of the colonies are observed to migrate towards the colony edge forming a ring during uniform spatial exposure. When the radiation is switched off, the colonies were observed to grow both inward into the evacuated regions as well as outward indicating that the pattern is not formed due to depletion of nutrients at the center of the colony. We also propose a reaction-diffusion model in which waste-limited chemotaxis initiated by the UV radiation leads to the observed phenomenology.
4 pages, 4 figures Reaction diffusion model has been added
References in corpus (1)
Cited by in corpus (5)
- Pattern formation and coexistence domains for a nonlocal population dynamics
- Self-organization in two-dimensional swarms
- Periodically Varying Externally Imposed Environmental Effects on Population Dynamics
- Pattern formation of a nonlocal, anisotropic interaction model
- Stability analysis of line patterns of an anisotropic interaction model