activity
20002011
most citedInbreeding and outbreeding depressions in the Penna model as a result of crossover frequency

15 citations · 71 across the 24 of their papers we have counts for

collaborators
Showing 2009Show all

6 papers · 1 filter

q-bio.PE20093 cited

Modelling the Evolution of Spatially Distributed Populations in the Uniformly Changing Environment - Sympatric Speciation

Wojciech Waga, Marta Zawierta, Stanislaw Cebrat

We have simulated the evolution of age structured populations whose individuals represented by their diploid genomes were distributed on a square lattice. The environmental conditi…

q-bio.GN20092 cited

Modelling survival and allele complementation in the evolution of genomes with polymorphic loci

S. Cebrat, D. Stauffer, J. S. Sa Martins +2

We have simulated the evolution of sexually reproducing populations composed of individuals represented by diploid genomes. A series of eight bits formed an allele occupying one of…

q-bio.GN2009

Evolution of genomes in the hybridogenetic populations modelled by the Penna model

Mateusz Kula, Katarzyna Bonkowska, Maria Ogielska +3

Background: Hybridogenesis is a very interesting example of reproduction which seems to integrate the sexual and clonal processes in one system. In a case of frogs, described in th…

q-bio.GN2009

Darwinian purifying selection versus complementing strategy in Monte Carlo simulations

Wojciech Waga, Marta Zawierta, Jakub Kowalski +1

Intragenomic recombination (crossover) is a very important evolutionary mechanism. The crossover events are not evenly distributed along the natural chromosomes. Monte Carlo simula…

q-bio.GN20094 cited

To Understand Nature - Computer Modelling between Genetics and Evolution

Dorota Mackiewicz, Stanislaw Cebrat

We have presented the basic knowledge on the structure of molecules coding the genetic information, mechanisms of transfer of this information from DNA to proteins and phenomena co…

q-bio.GN2009

Evolution of the Age Structured Populations and Demography

Agnieszka Laszkiewicz, Przemyslaw Biecek, Katarzyna Bonkowska +1

We describe the simulation method of modelling the population evolution using Monte Carlo based on the Penna model. Individuals in the populations are represented by their diploid…