New estimates of the rates and effects of mildly deleterious mutation in Drosophila melanogaster
Open Access
- 19 January 1999
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (2) , 574-579
- https://doi.org/10.1073/pnas.96.2.574
Abstract
The genomic rate and distribution of effects of deleterious mutations are important parameters in evolutionary theory. The most detailed information comes from the work of Mukai and Ohnishi, who allowed mutations to accumulate on Drosophila melanogaster second chromosomes, shielded from selection and recombination by being maintained heterozygous in males. Averaged over studies, the estimated rate of nonlethal viability mutations per second chromosome per generation under an equal-effects model, UBM, was 0.12, suggesting a high genomic mutation rate. We have performed a mutation-accumulation experiment similar to those of Mukai and Ohnishi, except that three large homozygous control populations were maintained. Egg-to-adult viability of 72 nonlethal mutation-accumulation (MA) lines and the controls was assayed after 27–33 generations of mutation accumulation. The rate of decline in mean viability was significantly lower than observed by Mukai, and the rate of increase in among-line variance was significantly higher. Our UBM estimate of 0.02 is much lower than the previous estimates. Our results suggest that the rate of mutations that detectably reduce viability may not be much greater than the lethal mutation rate (0.01 in these lines), but the results also are consistent with models that include many mutations with very small effects.Keywords
This publication has 20 references indexed in Scilit:
- Mutation and Extinction: The Role of Variable Mutational Effects, Synergistic Epistasis, Beneficial Mutations, and Degree of OutcrossingEvolution, 1997
- The Rate and Effects Distribution of Viability Mutation in Drosophila: Minimum Distance EstimationEvolution, 1997
- The Contribution of New Mutations to Genotype-Environment Interaction for Fitness in Drosophila melanogasterEvolution, 1996
- Mutation Accumulation and the Extinction of Small PopulationsThe American Naturalist, 1995
- Mutation and ConservationConservation Biology, 1995
- Genotype—environment interactions and the estimation of the genomic mutation rate inDrosophila melanogasterProceedings Of The Royal Society B-Biological Sciences, 1994
- The distribution of transposable elements within and between chromosomes in a population ofDrosophila melanogaster. I. Element frequencies and distributionGenetics Research, 1992
- Mutation-selection balance and the evolutionary advantage of sex and recombinationGenetics Research, 1990
- EVOLUTIONARY QUANTITATIVE GENETICS: HOW LITTLE DO WE KNOW?Annual Review of Genetics, 1989
- The Viability of Near-normal Irradiated ChromosomesInternational Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine, 1959