Simulated ecology-driven sympatric speciation
arXiv:cond-mat/0011458 · doi:10.1103/PhysRevE.64.021906
Abstract
We introduce a multi-locus genetically acquired phenotype, submitted to mutations and with selective value, in an age-structured model for biological aging. This phenotype describes a single-trait effect of the environment on an individual, and we study the resulting distribution of this trait among the population. In particular, our simulations show that the appearance of a double phenotypic attractor in the ecology induces the emergence of a stable polymorphism, as observed in the Galapagos finches. In the presence of this polymorphism, the simulations generate short-term speciation, when mating preferences are also allowed to suffer mutations and acquire selective value.
11 pages, 5 figures, 1 table, uses package RevTeX
Cited by in corpus (8)
- Evolution of polymorphism and sympatric speciation through competition in a unimodal distribution of resources
- Thermodynamic behavior of a phase transition in a model for sympatric speciation
- Sympatric speciation in an age-structured population living on a lattice
- Simulations of a mortality plateau in the sexual Penna model for biological ageing
- Monte carlo simulations of parapatric speciation
- Sharp gene pool transition in a population affected by phenotype-based selective hunting
- Phase transition in a mean-field model for sympatric speciation
- Sympatric Speciation in a Simple Food Web