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RevBayes: Bayesian Phylogenetic Inference Using Graphical Models and an Interactive Model-Specification Language

Systematic Biology · 2016 · Vol. 65(4) · pp. 726–736
Sebastian HöhnaMichael J. LandisTracy A. HeathBastien BoussauNicolas LartillotBrian R. MooreJohn P. HuelsenbeckFredrik Ronquist

Abstract

Programs for Bayesian inference of phylogeny currently implement a unique and fixed suite of models. Consequently, users of these software packages are simultaneously forced to use a number of programs for a given study, while also lacking the freedom to explore models that have not been implemented by the developers of those programs. We developed a new open-source software package, RevBayes, to address these problems. RevBayes is entirely based on probabilistic graphical models, a powerful generic framework for specifying and analyzing statistical models. Phylogenetic-graphical models can be specified interactively in RevBayes, piece by piece, using a new succinct and intuitive language called Rev. Rev is similar to the R language and the BUGS model-specification language, and should be easy to learn for most users. The strength of RevBayes is the simplicity with which one can design, specify, and implement new and complex models. Fortunately, this tremendous flexibility does not come at the cost of slower computation; as we demonstrate, RevBayes outperforms competing software for several standard analyses. Compared with other programs, RevBayes has fewer black-box elements. Users need to explicitly specify each part of the model and analysis. Although this explicitness may initially be unfamiliar, we are convinced that this transparency will improve understanding of phylogenetic models in our field. Moreover, it will motivate the search for improvements to existing methods by brazenly exposing the model choices that we make to critical scrutiny. RevBayes is freely available at http://www.RevBayes.com [Bayesian inference; Graphical models; MCMC; statistical phylogenetics.].

Genomics and Phylogenetic StudiesGenetic diversity and population structureEvolution and Paleontology StudiesBayesian inferencePhylogenetic treeBiologyInferenceBayesian probabilityGraphical modelComputer scienceEvolutionary biologyArtificial intelligenceGenetics

MeSH terms

Bayes TheoremClassificationModels, BiologicalPhylogenySoftware

Funding

  • National Science Foundation
  • Adolph C. and Mary Sprague Miller Institute for Basic Research in Science, University of California Berkeley
  • National Evolutionary Synthesis Center
  • Vetenskapsrådet
Citations
907
FWCI
29.59
field-weighted impact
References
86
Percentile
100%
vs. same field & year
Citations per year
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PLoS Computational Biology · 2014 · 6,896 citations
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The Journal of Chemical Physics · 1953 · 36,613 citations
Bayesian Phylogeography Finds Its Roots
PLoS Computational Biology · 2009 · 1,888 citations
Relaxed Phylogenetics and Dating with Confidence
PLoS Biology · 2006 · 6,538 citations
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