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A mitochondrial DNA phylogeny of African clawed frogs: phylogeography and implications for polyploid evolution

The African clawed frogs ( Silurana and Xenopus), model organisms for scientific inquiry, are unusual in that allopolyploidization has occurred on multiple occasions, giving rise to tetraploid, octoploid, and dodecaploid species. To better understand their evolution, here we estimate a mitochondrial...

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Bibliographic Details
Published in:Molecular phylogenetics and evolution 2004-10, Vol.33 (1), p.197-213
Main Authors: Evans, Ben J., Kelley, Darcy B., Tinsley, Richard C., Melnick, Don J., Cannatella, David C.
Format: Article
Language:English
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Summary:The African clawed frogs ( Silurana and Xenopus), model organisms for scientific inquiry, are unusual in that allopolyploidization has occurred on multiple occasions, giving rise to tetraploid, octoploid, and dodecaploid species. To better understand their evolution, here we estimate a mitochondrial DNA phylogeny from all described and some undescribed species. We examine the timing and location of diversification, and test hypotheses concerning the frequency of polyploid speciation and taxonomy. Using a relaxed molecular clock, we estimate that extant clawed frog lineages originated well after the breakup of Gondwana, about 63.7 million years ago, with a 95% confidence interval from 50.4 to 81.3 million years ago. Silurana and two major lineages of Xenopus have overlapping distributions in sub-Saharan Africa, and dispersal–vicariance analysis suggests that clawed frogs originated in central and/or eastern equatorial Africa. Most or all extant species originated before the Pleistocene; recent rainforest refugia probably acted as “lifeboats” that preserved existing species, rather than “species pumps” where many new successful lineages originated. We estimate that polyploidization occurred at least six times in clawed frogs.
ISSN:1055-7903
1095-9513
DOI:10.1016/j.ympev.2004.04.018