Spontaneous pattern formation and genetic invasion in locally mating and competing populations
- 17 May 2002
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 65 (5) , 051919
- https://doi.org/10.1103/physreve.65.051919
Abstract
We present a theoretical model of evolution of spatially distributed populations in which organisms mate with and compete against each other only locally. We show using both analysis and numerical simulation that the typical dynamics of population density variation is a spontaneous formation of isolated groups due to competition for resources. The resulting spatial separation between groups strongly affects the process of genetic invasion by local reproductive mixing, and spatially inhomogeneous genetic distributions are possible in the final states. We then consider a specific version of this model in the presence of disruptive selection, favoring two fittest types against their genetic intermediates. This case can be simplified to a system that involves just two nonconserved order parameters: population density and type difference. Since the coexistence of two fittest types is unstable in this case, symmetry breaking and coarsening occur in type difference, implying eventual dominance by one type over another for finite populations. However, such coarsening patterns may be pinned by the spontaneously generated spatial separation between isolated groups. The long-term evolution of genetic composition is found to be sensitive to the ratio of the mating and competition ranges, and other parameters. Our model may provide a theoretical basis for consideration of various properties of spatially extended evolutionary processes, including spontaneous formation of subpopulations and lateral invasion of different types.Keywords
This publication has 34 references indexed in Scilit:
- Symmetry breaking and coarsening in spatially distributed evolutionary processes including sexual reproduction and disruptive selectionPhysical Review E, 2000
- Nucleation and Relaxation from Meta-stability in Spatial Ecological ModelsJournal of Theoretical Biology, 1999
- “Critical Slowing Down” in Time-to-extinction: an Example of Critical Phenomena in EcologyJournal of Theoretical Biology, 1998
- Stochastic Spatial Models: A User's Guide to Ecological ApplicationsPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1994
- Surfaces of Selective Value RevisitedThe American Naturalist, 1988
- Pattern Generation in Space and AspectSIAM Review, 1985
- A Pre-pattern formation mechanism for animal coat markingsJournal of Theoretical Biology, 1981
- Quantitative universality for a class of nonlinear transformationsJournal of Statistical Physics, 1978
- Simple mathematical models with very complicated dynamicsNature, 1976
- The chemical basis of morphogenesisPhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1952