The molecular clock runs more slowly in man than in apes and monkeys
- 1 March 1987
- journal article
- Published by Springer Nature in Nature
- Vol. 326 (6108) , 93-96
- https://doi.org/10.1038/326093a0
Abstract
The molecular clock hypothesis postulates that the rate of molecular evolution is approximately constant over time. Although this hypothesis has been highly controversial in the past, it is now widely accepted. The assumption of rate constancy has often been taken as a basis for reconstructing the phylogenetic relationships among organisms or genes and for dating evolutionary events. Further, it has been taken as strong support for the neutral mutation hypothesis, which postulates that the majority of molecular changes in evolution are due to neutral or nearly neutral mutations. For these reasons, the validity of the rate constancy assumption is a vital issue in molecular evolution. Recent studies using DNA sequence data have raised serious doubts about the hypothesis. These studies provided support for the suggestion made from immunological distance and protein sequence data that a rate slowdown has occurred in hominoid evolution, and showed, in agreement with DNA hybridization studies, that rates of nucleotide substitution are significantly higher in rodents than in man. Here, rates of nucleotide substitution in rodents are estimated to be 4-10 times higher than those in higher primates and 2-4 times higher than those in artiodactyls. Further, this study provides strong evidence for the hominoid slowdown hypothesis and suggests a further rate-slowdown in hominoid evolution. Our results suggest that the variation in rate among mammals is primarily due to differences in generation time rather than changes in DNA repair mechanisms. We also propose a method for estimating the divergence times between species when the rate constancy assumption is violated.Keywords
This publication has 43 references indexed in Scilit:
- Structure and expression of mouse aldolase genes. Brain-specific aldolase C amino acid sequence is closely related to aldolase AEuropean Journal of Biochemistry, 1986
- Molecular cloning of the human thyrotropin-β subunit geneFEBS Letters, 1985
- A Hydrophobic Transmembrane Segment at the Carboxyl Terminus of thy-1Science, 1985
- Rise and fall of the delta globin geneJournal of Molecular Biology, 1983
- Molecular clock of silent substitution: At least six-fold preponderance of silent changes in mitochondrial genes over those in nuclear genesJournal of Molecular Evolution, 1982
- Mitochondrial DNA sequences of primates: Tempo and mode of evolutionJournal of Molecular Evolution, 1982
- Homology and concerted evolution at the α1 and α2 loci of human α-globinNature, 1981
- Biochemical EvolutionAnnual Review of Biochemistry, 1977
- An examination of the constancy of the rate of molecular evolutionJournal of Molecular Evolution, 1974
- Evolutionary Rate at the Molecular LevelNature, 1968