Of teeth and trees: A fossil tip-dating approach to infer divergence times of extinct and extant squaliform sharks
Loading...
Date
Authors
Flammensbeck, Christina K
Pollerspöck, Jürgen
Schedel, Frederic D B
Matzke, Nicholas
Straube, Nicolas
Journal Title
Journal ISSN
Volume Title
Publisher
Wiley
Abstract
Fossil tip-dating allows for the inclusion of morphological data in divergence time estimates based on both extant and extinct taxa. Neoselachii have a cartilaginous skeleton, which is less prone to fossilization compared to skeletons of Osteichthyans. Therefore, the majority of the neoselachian fossil record is comprised of single teeth, which fossilize more easily. Neoselachian teeth can be found in large numbers as they are continuously replaced. Tooth morphologies are of major importance on multiple taxonomic levels for identification of shark and ray taxa. Here, we review dental morphological characters of squalomorph sharks and test these for their phylogenetic signal. Subsequently, we combine DNA sequence data (concatenated exon sequences) with dental morphological characters from 85 fossil and extant taxa to simultaneously infer the phylogeny and re-estimate divergence times using information of 61 fossil tip-dates as well as eight node age calibrations of squalomorph sharks. Our findings show that the phylogenetic placement of fossil taxa is mostly in accordance with their previous taxonomic allocation. An exception is the phylogenetic placement of the extinct genus †Protospinax, which remains unclear. We conclude that the high number of fossil taxa as well as the comprehensive DNA sequence data for extant taxa may compensate for the limited number of morphological characters identifiable on teeth, serving as a backbone for reliably estimating the phylogeny of both extinct and extant taxa. In general, tip-dating mostly estimates older node ages compared to previous studies based on calibrated molecular clocks.
Description
Keywords
Citation
Collections
Source
Zoologica Scripta
Type
Book Title
Entity type
Access Statement
License Rights
Restricted until
2099-12-31