When Trees Grow Too Long: Investigating the Causes of Highly Inaccurate Bayesian Branch-Length Estimates
Open Access
- 10 December 2009
- journal article
- research article
- Published by Oxford University Press (OUP) in Systematic Biology
- Vol. 59 (2), 145-161
- https://doi.org/10.1093/sysbio/syp081
Abstract
A surprising number of recent Bayesian phylogenetic analyses contain branch-length estimates that are several orders of magnitude longer than corresponding maximum-likelihood estimates. The levels of divergence implied by such branch lengths are unreasonable for studies using biological data and are known to be false for studies using simulated data. We conducted additional Bayesian analyses and studied approximate-posterior surfaces to investigate the causes underlying these large errors. We manipulated the starting parameter values of the Markov chain Monte Carlo (MCMC) analyses, the moves used by the MCMC analyses, and the prior-probability distribution on branch lengths. We demonstrate that inaccurate branch-length estimates result from either 1) poor mixing of MCMC chains or 2) posterior distributions with excessive weight at long tree lengths. Both effects are caused by a rapid increase in the volume of branch-length space as branches become longer. In the former case, both an MCMC move that scales all branch lengths in the tree simultaneously and the use of overdispersed starting branch lengths allow the chain to accurately sample the posterior distribution and should be used in Bayesian analyses of phylogeny. In the latter case, branch-length priors can have strong effects on resulting inferences and should be carefully chosen to reflect biological expectations. We provide a formula to calculate an exponential rate parameter for the branch-length prior that should eliminate inference of biased branch lengths in many cases. In any phylogenetic analysis, the biological plausibility of branch-length output must be carefully considered.Keywords
This publication has 19 references indexed in Scilit:
- Cryptic Failure of Partitioned Bayesian Phylogenetic Analyses: Lost in the Land of Long TreesSystematic Biology, 2009
- Conflicting Mitochondrial and Nuclear Phylogenies for the Widely Disjunct Emys (Testudines: Emydidae) Species Complex, and What They Tell Us about Biogeography and HybridizationSystematic Biology, 2009
- Species limits and phylogeography of North American cricket frogs (Acris: Hylidae)Molecular Phylogenetics and Evolution, 2008
- ALL-MALE ASEXUALITY: ORIGIN AND MAINTENANCE OF ANDROGENESIS IN THE ASIAN CLAM CORBICULAEvolution, 2008
- Phylogeny-based delimitation of species boundaries and contact zones in the trilling chorus frogs (Pseudacris)Molecular Phylogenetics and Evolution, 2007
- GEOLOGICAL AND CLIMATIC FORCES DRIVING SPECIATION IN THE CONTINENTALLY DISTRIBUTED TRILLING CHORUS FROGS (PSEUDACRIS)Evolution, 2007
- The Importance of Data Partitioning and the Utility of Bayes Factors in Bayesian PhylogeneticsSystematic Biology, 2007
- Introduction to Markov Chain Monte Carlo Methods in Molecular EvolutionPublished by Springer Nature ,2005
- Polytomies and Bayesian Phylogenetic InferenceSystematic Biology, 2005
- An invariant form for the prior probability in estimation problemsProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1946