The population genetics of mutations: good, bad and indifferent
- 27 April 2010
- journal article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 365 (1544) , 1153-1167
- https://doi.org/10.1098/rstb.2009.0317
Abstract
Population genetics is fundamental to our understanding of evolution, and mutations are essential raw materials for evolution. In this introduction to more detailed papers that follow, we aim to provide an oversight of the field. We review current knowledge on mutation rates and their harmful and beneficial effects on fitness and then consider theories that predict the fate of individual mutations or the consequences of mutation accumulation for quantitative traits. Many advances in the past built on models that treat the evolution of mutations at each DNA site independently, neglecting linkage of sites on chromosomes and interactions of effects between sites (epistasis). We review work that addresses these limitations, to predict how mutations interfere with each other. An understanding of the population genetics of mutations of individual loci and of traits affected by many loci helps in addressing many fundamental and applied questions: for example, how do organisms adapt to changing environments, how did sex evolve, which DNA sequences are medically important, why do we age, which genetic processes can generate new species or drive endangered species to extinction, and how should policy on levels of potentially harmful mutagens introduced into the environment by humans be determined?Keywords
This publication has 164 references indexed in Scilit:
- Genome evolution and adaptation in a long-term experiment with Escherichia coliNature, 2009
- Common Genetic Variation and Human TraitsNew England Journal of Medicine, 2009
- The effects of deleterious mutations on evolution in non-recombining genomesTrends in Genetics, 2008
- Epistasis — the essential role of gene interactions in the structure and evolution of genetic systemsNature Reviews Genetics, 2008
- Ohno's dilemma: Evolution of new genes under continuous selectionProceedings of the National Academy of Sciences, 2007
- The other side of the nearly neutral theory, evidence of slightly advantageous back-mutationsProceedings of the National Academy of Sciences, 2007
- The traveling-wave approach to asexual evolution: Muller's ratchet and speed of adaptationTheoretical Population Biology, 2007
- Epistasis correlates to genomic complexityProceedings of the National Academy of Sciences, 2006
- Mutation accumulation in finite outbreeding and inbreeding populationsGenetics Research, 1993
- The role of compensatory neutral mutations in molecular evolutionJournal of Genetics, 1985