Recent acceleration of human adaptive evolution
- 26 December 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (52) , 20753-20758
- https://doi.org/10.1073/pnas.0707650104
Abstract
Genomic surveys in humans identify a large amount of recent positive selection. Using the 3.9-million HapMap SNP dataset, we found that selection has accelerated greatly during the last 40,000 years. We tested the null hypothesis that the observed age distribution of recent positively selected linkage blocks is consistent with a constant rate of adaptive substitution during human evolution. We show that a constant rate high enough to explain the number of recently selected variants would predict (i) site heterozygosity at least 10-fold lower than is observed in humans, (ii) a strong relationship of heterozygosity and local recombination rate, which is not observed in humans, (iii) an implausibly high number of adaptive substitutions between humans and chimpanzees, and (iv) nearly 100 times the observed number of high-frequency linkage disequilibrium blocks. Larger populations generate more new selected mutations, and we show the consistency of the observed data with the historical pattern of human population growth. We consider human demographic growth to be linked with past changes in human cultures and ecologies. Both processes have contributed to the extraordinarily rapid recent genetic evolution of our species.Keywords
This publication has 63 references indexed in Scilit:
- Localizing Recent Adaptive Evolution in the Human GenomePLoS Genetics, 2007
- A Practical Genome Scan for Population-Specific Strong Selective Sweeps That Have Reached FixationPLOS ONE, 2007
- Forces Shaping the Fastest Evolving Regions in the Human GenomePLoS Genetics, 2006
- Distribution of fitness effects among beneficial mutations before selection in experimental populations of bacteriaNature Genetics, 2006
- A Map of Recent Positive Selection in the Human GenomePLoS Biology, 2006
- The Case for Selection at CCR5-Δ32PLoS Biology, 2005
- A haplotype map of the human genomeNature, 2005
- The Geographic Spread of the CCR5 Δ32 HIV-Resistance AllelePLoS Biology, 2005
- Genomics at the origins of agriculture, part oneEvolutionary Anthropology, 2005
- Population History and Natural Selection Shape Patterns of Genetic Variation in 132 GenesPLoS Biology, 2004