Sexual reproduction selects for robustness and negative epistasis in artificial gene networks
- 2 March 2006
- journal article
- Published by Springer Nature in Nature
- Vol. 440 (7080), 87-90
- https://doi.org/10.1038/nature04488
Abstract
The mutational deterministic hypothesis for the origin and maintenance of sexual reproduction posits that sex enhances the ability of natural selection to purge deleterious mutations after recombination brings them together into single genomes. This explanation requires negative epistasis, a type of genetic interaction where mutations are more harmful in combination than expected from their separate effects. The conceptual appeal of the mutational deterministic hypothesis has been offset by our inability to identify the mechanistic and evolutionary bases of negative epistasis. Here we show that negative epistasis can evolve as a consequence of sexual reproduction itself. Using an artificial gene network model, we find that recombination between gene networks imposes selection for genetic robustness, and that negative epistasis evolves as a by-product of this selection. Our results suggest that sexual reproduction selects for conditions that favour its own maintenance, a case of evolution forging its own path.Keywords
This publication has 26 references indexed in Scilit:
- Evidence for Positive Epistasis in HIV-1Science, 2004
- Epistasis and Its Relationship to Canalization in the RNA Virus φ6Genetics, 2004
- Waddington's canalization revisited: Developmental stability and evolutionProceedings of the National Academy of Sciences, 2002
- FACTORS AFFECTING THE GENETIC LOAD IN DROSOPHILA: SYNERGISTIC EPISTASIS AND CORRELATIONS AMONG FITNESS COMPONENTSEvolution, 2000
- PERSPECTIVE: SPONTANEOUS DELETERIOUS MUTATIONEvolution, 1999
- Test of synergistic interactions among deleterious mutations in bacteriaNature, 1997
- TEST OF INTERACTION BETWEEN GENETIC MARKERS THAT AFFECT FITNESS INASPERGILLUS NIGEREvolution, 1997
- DOES EVOLUTIONARY PLASTICITY EVOLVE?Evolution, 1996
- MULTIPLE FITNESS PEAKS AND EPISTASISAnnual Review of Ecology and Systematics, 1995
- Deleterious mutations and the evolution of sexual reproductionNature, 1988