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Calibrating the avian molecular clock

Molecular Ecology · 2008 · Vol. 17(10) · pp. 2321–2328
Jason T. WeirDolph Schluter

Abstract

Molecular clocks are widely used to date phylogenetic events, yet evidence supporting the rate constancy of molecular clocks through time and across taxonomic lineages is weak. Here, we present 90 candidate avian clock calibrations obtained from fossils and biogeographical events. Cross-validation techniques were used to identify and discard 16 inconsistent calibration points. Molecular evolution occurred in an approximately clock-like manner through time for the remaining 74 calibrations of the mitochondrial gene, cytochrome b. A molecular rate of approximately 2.1% (+/- 0.1%, 95% confidence interval) was maintained over a 12-million-year interval and across most of 12 taxonomic orders. Minor but significant variance in rates occurred across lineages but was not explained by differences in generation time, body size or latitudinal distribution as previously suggested.

Genetic diversity and population structureEvolution and Paleontology StudiesSpecies Distribution and Climate ChangeMolecular clockBiologyPhylogenetic treeEvolutionary biologyMolecular evolutionCytochrome bEcologyGeneticsGene

MeSH terms

AnimalsBirdsFossilsPhylogenyCytochromes bGenes, Mitochondrial

Funding

  • Natural Sciences and Engineering Research Council of Canada
Citations
767
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30.31
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53
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