bioRxiv · 10.1101/2024.09.30.615760
Probabilistic modelling improves relative dating from gene phylogenies
Abstract
O_LIEstablishing the timing of past evolutionary events is a fundamental task in the reconstruction of the history of life. State-of-the-art molecular dating methods generally involve the reconstruction of a species tree from conserved, vertically evolving genes, and the assumption of a molecular clock calibrated with the fossil record. Although this approach is extremely useful, its use is limited to speciation events and does not account for genes following different evolutionary paths. Recently, an alternative methodology for the relative dating of evolutionary events has been proposed that considers the distribution of branch lengths across sets of gene trees. C_LIO_LIHere, we validate this methodology by comparing the relative age estimates with a fossil-calibrated phylogeny and propose a model-based formalisation using a Bayesian framework. C_LIO_LIOur analyses revealed that the normalisation of the distances of interest with the branch lengths of a reference clade present across the set of gene trees results in narrower distributions, allowing the correct inference of the relative ordering of evolutionary events. C_LIO_LIWe show that distributions of normalised lengths can be modelled using gamma or lognormal distributions and demonstrate that inference of the posterior distribution of the mode allows accurate relative age estimation, as assessed by a strong correlation with the molecular clock-dated tree. C_LI
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Bernabeu, M., Armero, C., Gabaldon, T.. 2024-10-01. Probabilistic modelling improves relative dating from gene phylogenies. https://doi.org/10.1101/2024.09.30.615760
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