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Estimating Absolute Rates of Molecular Evolution and Divergence Times: A Penalized Likelihood Approach

Molecular Biology and Evolution · 2002 · Vol. 19(1) · pp. 101–109
Michael J. Sanderson

Abstract

Rates of molecular evolution vary widely between lineages, but quantification of how rates change has proven difficult. Recently proposed estimation procedures have mainly adopted highly parametric approaches that model rate evolution explicitly. In this study, a semiparametric smoothing method is developed using penalized likelihood. A saturated model in which every lineage has a separate rate is combined with a roughness penalty that discourages rates from varying too much across a phylogeny. A data-driven cross-validation criterion is then used to determine an optimal level of smoothing. This criterion is based on an estimate of the average prediction error associated with pruning lineages from the tree. The methods are applied to three data sets of six genes across a sample of land plants. Optimally smoothed estimates of absolute rates entailed 2- to 10-fold variation across lineages.

Genetic diversity and population structureGenetic and phenotypic traits in livestockEvolution and Genetic DynamicsSmoothingBiologyDivergence (linguistics)StatisticsEvolutionary biologyMaximum likelihoodParametric statisticsMathematics

MeSH terms

AlgorithmsModels, GeneticPhylogenyPlantsTime FactorsGenetic VariationReproducibility of ResultsModels, StatisticalLikelihood FunctionsGenes, PlantEvolution, Molecular

Funding

  • National Science Foundation
Citations
2,030
FWCI
48.14
field-weighted impact
References
46
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100%
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Citations per year
References
The general stochastic model of nucleotide substitution
Journal of Theoretical Biology · 1990 · 2,359 citations
Estimating the rate of evolution of the rate of molecular evolution
Molecular Biology and Evolution · 1998 · 1,341 citations
<i>The Theory of Stochastic Processes</i>
Physics Today · 1966 · 3,363 citations
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