Journal article

Phylodynamic Model Adequacy Using Posterior Predictive Simulations

S Duchene, R Bouckaert, DA Duchene, T Stadler, AJ Drummond

Systematic Biology | OXFORD UNIV PRESS | Published : 2019

Open access

Abstract

Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar timescale over which their epidemiological processes occur, such that, it is possible to make inferences about their infectious spread using phylogenetic time-trees. For this purpose it is necessary to choose a phylodynamic model. However, the resulting inferences are contingent on whether the model adequately describes key features of the data. Model adequacy methods allow formal rejection of a model if it cannot generate the main features of the data. We present TreeModelAdequacy, a package for the popular BEAST2 software that allows assessing the adequacy of phylodynamic models. We illustrate ..

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University of Melbourne Researchers

Grants

Awarded by Seventh Framework Programme


Funding Acknowledgements

S.D. was supported by a McKenzie fellowship and a Dyason grant from the University of Melbourne. A.J.D. was supported by a Rutherford fellowship (http://www.royalsociety.org.nz/programmes/funds/rutherford-discovery/) from the Royal Society of New Zealand. T.S. was supported in part by the European Research Council under the Seventh Framework Programme of the European Commission [PhyPD: grant agreement number 335529].