Abstract
AbstractEvolutionary processes happen gradually over time and are, thus, considered time dependent. In addition, several evolutionary processes are either adaptations to local habitats or changing habitats, otherwise restricted thereby. Since evolutionary processes driving speciation take place within the landscape of environmental and temporal bounds, several published studies have aimed at providing accurate, fossil-calibrated, estimates of the divergence times of both extant and extinct species. Correct calibration is critical towards attributing evolutionary adaptations and speciation both to the time and paleogeography that contributed to it. Data from more than 4000 studies and nearly 1,50,000 species are available from a central TimeTree resource and provide opportunities of retrieving divergence times, evolutionary timelines, and time trees in various formats for most vertebrates. These data greatly enhance the ability of researchers to investigate evolution. However, there is limited functionality when studying lists of species that require batch retrieval. To overcome this, a PYTHON package termed Python-Automated Retrieval of TimeTree data (PAReTT) was created to facilitate a biologist-friendly interaction with the TimeTree resource. Here, we illustrate the use of the package through three examples that includes the use of timeline data, time tree data, and divergence time data. Furthermore, PAReTT was previously used in a meta-analysis of candidate genes to illustrate the relationship between divergence times and candidate genes of migration. The PAReTT package is available for download from GitHub or as a pre-compiled Windows executable, with extensive documentation on the package available on GitHub wiki pages regarding dependencies, installation, and implementation of the various functions.
Funder
National Research Foundation
University of the Free State
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics
Reference51 articles.
1. Barker K, Burns KJ, Klicka J et al (2015) New insights into new world biogeography: an integrated view from the phylogeny of blackbirds, cardinals, sparrows, tanagers, warblers, and allies. Auk 132:333–348. https://doi.org/10.1642/AUK-14-110.1
2. BirdLife International, Handbook of the Birds of the World (2021) Bird species distribution maps of the world. Version 2021.1. http://datazone.birdlife.org/species/requestdis. Accessed 9 Dec 2021
3. Carr J (2021) Mantel. PYTHON package version 2.1.0. https://github.com/jwcarr/mantel. Accessed 21 Apr 2022
4. Castiglione S, Mondanaro A, Melchionna M et al (2017) Diversification rates and the evolution of species range size frequency distribution. Front Ecol Evol 5:147. https://doi.org/10.3389/FEVO.2017.00147/BIBTEX
5. Etienne RS, Apol MEF (2009) Estimating speciation and extinction rates from diversity data and the fossil record. Evolution 63:244–255. https://doi.org/10.1111/j.1558-5646.2008.00537.x
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