Molecular tip-dating of phylogenetic trees is a growing discipline that uses DNA sequences sampled at different points in time to co-estimate the timing of evolutionary events with rates of molecular evolution. In this context, BEAST, a program for Bayesian analysis of molecular sequences, is the most widely used phylogenetic tool. Here, we introduce TipDatingBeast, an R package built to assist the implementation of various phylogenetic tip-dating tests using BEAST. TipDatingBeast currently contains two main functions. The first one allows preparing date-randomization analyses, which assess the temporal signal of a dataset. The second function allows performing leave-one-out analyses, which test for the consistency between independent calib...
BEAST analysis of the chloroplast genome with a truncated normal calibration prior. For analytical d...
BEAST analysis of the nuclear genes with a truncated normal calibration prior. For analytical detail...
BEAST analysis of the chloroplast genome with a lognormal calibration prior. For analytical details ...
Molecular tip-dating of phylogenetic trees is a growing discipline that uses DNA sequences sampled a...
Molecular tip dating of phylogenetic trees is a growing discipline that uses DNA sequences sampled a...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Bayesian molecular dating is widely used to study evolutionary timescales. This procedure usually in...
Evolutionary timescales can be inferred by molecular-clock analyses of genetic data and fossil evide...
Molecular clock methodology provides the best means of establishing evolutionary timescales, the acc...
Tip-dating methods are becoming popular alternatives to traditional node calibration approaches for ...
Maximum clade credibility tree for the variable-rates tip-dating Bayesian analysis. Numbers at the n...
The molecular clock provides the only viable means of establishing realistic evolutionary timescales...
Dated phylogenies of fossil taxa allow palaeobiologists to estimate the timing of major divergences ...
BEAST analysis of the chloroplast genome with a truncated normal calibration prior. For analytical d...
BEAST analysis of the nuclear genes with a truncated normal calibration prior. For analytical detail...
BEAST analysis of the chloroplast genome with a lognormal calibration prior. For analytical details ...
Molecular tip-dating of phylogenetic trees is a growing discipline that uses DNA sequences sampled a...
Molecular tip dating of phylogenetic trees is a growing discipline that uses DNA sequences sampled a...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Molecular dating of phylogenetic trees is a growing discipline using sequence data to co-estimate th...
Bayesian molecular dating is widely used to study evolutionary timescales. This procedure usually in...
Evolutionary timescales can be inferred by molecular-clock analyses of genetic data and fossil evide...
Molecular clock methodology provides the best means of establishing evolutionary timescales, the acc...
Tip-dating methods are becoming popular alternatives to traditional node calibration approaches for ...
Maximum clade credibility tree for the variable-rates tip-dating Bayesian analysis. Numbers at the n...
The molecular clock provides the only viable means of establishing realistic evolutionary timescales...
Dated phylogenies of fossil taxa allow palaeobiologists to estimate the timing of major divergences ...
BEAST analysis of the chloroplast genome with a truncated normal calibration prior. For analytical d...
BEAST analysis of the nuclear genes with a truncated normal calibration prior. For analytical detail...
BEAST analysis of the chloroplast genome with a lognormal calibration prior. For analytical details ...