ClockstaRX: Testing Molecular Clock Hypotheses With Genomic Data

Author:

Duchêne David A12ORCID,Duchêne Sebastián3ORCID,Stiller Josefin4,Heller Rasmus5,Ho Simon Y W6ORCID

Affiliation:

1. Center for Evolutionary Hologenomics, University of Copenhagen , Copenhagen 1352 , Denmark

2. Section of Epidemiology, Department of Public Health, University of Copenhagen, Copenhagen 1352, Denmark

3. Department of Microbiology and Immunology, Peter Doherty Institute for Infection and Immunity, University of Melbourne , Melbourne, VIC 3010 , Australia

4. Villum Centre for Biodiversity Genomics, University of Copenhagen , 2100 Copenhagen , Denmark

5. Section for Computational and RNA Biology, Department of Biology, University of Copenhagen , Copenhagen 2100 , Denmark

6. School of Life and Environmental Sciences, University of Sydney , Sydney, NSW 2006 , Australia

Abstract

Abstract Phylogenomic data provide valuable opportunities for studying evolutionary rates and timescales. These analyses require theoretical and statistical tools based on molecular clocks. We present ClockstaRX, a flexible platform for exploring and testing evolutionary rate signals in phylogenomic data. Here, information about evolutionary rates in branches across gene trees is placed in Euclidean space, allowing data transformation, visualization, and hypothesis testing. ClockstaRX implements formal tests for identifying groups of loci and branches that make a large contribution to patterns of rate variation. This information can then be used to test for drivers of genomic evolutionary rates or to inform models for molecular dating. Drawing on the results of a simulation study, we recommend forms of data exploration and filtering that might be useful prior to molecular-clock analyses.

Publisher

Oxford University Press (OUP)

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