Fast Evolution of Core Promoters in Primate Genomes
Open Access
- 14 January 2008
- journal article
- Published by Oxford University Press (OUP) in Molecular Biology and Evolution
- Vol. 25 (6) , 1239-1244
- https://doi.org/10.1093/molbev/msn072
Abstract
Despite much interest in regulatory evolution, how promoters have evolved remains poorly studied, mainly owing to paucity of data on promoter regions. Using a new set of high-quality experimentally determined core promoters of the human genome, we conducted a comparative analysis of 2,492 human and rhesus macaque promoters and their neighboring nearly neutral regions. We found that the core promoters have an average rate of nucleotide substitution substantially higher than that at 4-fold degenerate sites and only slightly lower than that for the assumed neutral controls of neighboring noncoding regions, suggesting that core promoters are subject to very weak selective constraints. Interestingly, we identified 24 core promoters (at false discovery rate = 50%) that have evolved at an accelerated rate compared with the neutral controls, suggesting that they may have undergone positive selection. The inferred positively selected genes show strong bias in molecular function. We also used population genetic approaches to examine the evolution of core promoters in human populations and found evidence of positive selection at some loci. Taken together, our results suggest that positive selection has played a substantial role in the evolution of transcriptional regulation in primates.Keywords
This publication has 29 references indexed in Scilit:
- Adaptive Evolution of Conserved Noncoding Elements in MammalsPLoS Genetics, 2007
- Promoter regions of many neural- and nutrition-related genes have experienced positive selection during human evolutionNature Genetics, 2007
- Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot projectNature, 2007
- Heterotachy in Mammalian Promoter EvolutionPLoS Genetics, 2006
- A Map of Recent Positive Selection in the Human GenomePLoS Biology, 2006
- Selective Constraint on Noncoding Regions of Hominid GenomesPLoS Computational Biology, 2005
- Evidence for Widespread Degradation of Gene Control Regions in Hominid GenomesPLoS Biology, 2005
- The UCSC Genome Browser DatabaseNucleic Acids Research, 2003
- Detecting recent positive selection in the human genome from haplotype structureNature, 2002
- BLAT—The BLAST-Like Alignment ToolGenome Research, 2002