Evolution of Robustness in Digital Organisms
Open Access
- 1 March 2004
- journal article
- Published by MIT Press in Artificial Life
- Vol. 10 (2) , 167-179
- https://doi.org/10.1162/106454604773563595
Abstract
We study the evolution of robustness in digital organisms adapting to a high mutation rate. As genomes adjust to the harsh mutational environment, the mean effect of single mutations decreases, up until the point where a sizable fraction (up to 30% in many cases) of the mutations are neutral. We correlate the changes in robustness along the line of descent to changes in directional epistasis, and find that increased robustness is achieved by moving from antagonistic epistasis between mutations towards codes where mutations are, on average, independent. We interpret this recoding as a breakup of linkage between vital sections of the genome, up to the point where instructions are maximally independent of each other. While such a recoding often requires sacrificing some replication speed, it is the best strategy for withstanding high rates of mutation.Keywords
This publication has 6 references indexed in Scilit:
- PERSPECTIVE:EVOLUTION AND DETECTION OF GENETIC ROBUSTNESSEvolution, 2003
- Evolution of biological complexityProceedings of the National Academy of Sciences, 2000
- Little Evidence for Synergism Among Deleterious Mutations in a Nonsegmented RNA VirusJournal of Molecular Evolution, 1999
- Test of synergistic interactions among deleterious mutations in bacteriaNature, 1997
- Classification of Hypotheses on the Advantage of AmphimixisJournal of Heredity, 1993
- Selection against harmful mutations in large sexual and asexual populationsGenetics Research, 1982