Phylogenetic estimates of evolutionary timescales can be obtained from nucleotide sequence data using the molecular clock. These estimates are important for our understanding of evolutionary processes across all taxonomic levels. The molecular clock needs to be calibrated with an independent source of information, such as fossil evidence, to allow absolute ages to be inferred. Calibration typically involves fixing or constraining the age of at least one node in the phylogeny, enabling the ages of the remaining nodes to be estimated. We conducted an extensive simulation study to investigate the effects of the position and number of calibrations on the resulting estimate of the timescale. Our analyses focused on Bayesian estimates obtained us...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Divergence time estimation has become an essential tool for understanding macroevolutionary events. ...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
The estimation of phylogenetic divergence times from sequence data is an important component of many...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular-based divergence dating methods, or molecular clocks, are the primary neontological tool f...
The estimation of phylogenetic divergence times from sequence data is an important component of many...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Divergence time estimation has become an essential tool for understanding macroevolutionary events. ...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
The estimation of phylogenetic divergence times from sequence data is an important component of many...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular sequence data provide information about relative times only, and fossil-based age constrai...
Molecular-based divergence dating methods, or molecular clocks, are the primary neontological tool f...
The estimation of phylogenetic divergence times from sequence data is an important component of many...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Phylogeneticists are typically interested in obtaining time-stamped rooted phylogenetic trees. The a...
Divergence time estimation has become an essential tool for understanding macroevolutionary events. ...