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PMID: 27920231 Published · ppublish English Journal Article

Bayesian Morphological Clock Methods Resurrect Placoderm Monophyly and Reveal Rapid Early Evolution in Jawed Vertebrates.

Systematic biology ·Vol. 66 ·No. 4 ·2017-07-01 ·Pages 499-516

King B, Qiao T, Lee MSY, Zhu M, Long JA

Abstract

The phylogeny of early gnathostomes provides an important framework for understanding one of the most significant evolutionary events, the origin and diversification of jawed vertebrates. A series of recent cladistic analyses have suggested that the placoderms, an extinct group of armoured fish, form a paraphyletic group basal to all other jawed vertebrates. We revised and expanded this morphological data set, most notably by sampling autapomorphies in a similar way to parsimony-informative traits, thus ensuring this data (unlike most existing morphological data sets) satisfied an important assumption of Bayesian tip-dated morphological clock approaches. We also found problems with characters supporting placoderm paraphyly, including character correlation and incorrect codings. Analysis of this data set reveals that paraphyly and monophyly of core placoderms (excluding maxillate forms) are essentially equally parsimonious. The two alternative topologies have different root positions for the jawed vertebrates but are otherwise similar. However, analysis using tip-dated clock methods reveals strong support for placoderm monophyly, due to this analysis favoring trees with more balanced rates of evolution. Furthermore, enforcing placoderm paraphyly results in higher levels and unusual patterns of rate heterogeneity among branches, similar to that generated from simulated trees reconstructed with incorrect root positions. These simulations also show that Bayesian tip-dated clock methods outperform parsimony when the outgroup is largely uninformative (e.g., due to inapplicable characters), as might be the case here. The analysis also reveals that gnathostomes underwent a rapid burst of evolution during the Silurian period which declined during the Early Devonian. This rapid evolution during a period with few articulated fossils might partly explain the difficulty in ascertaining the root position of jawed vertebrates.

Keywords
BEAST Bayesian monophyly morphological clock morphology phylogenetics placoderms tip dating tree topology
MeSH Terms
Animals Bayes Theorem Biological Evolution Classification/methods Fossils Models, Biological Phylogeny Vertebrates
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
King Benedict
School of Biological Sciences, Flinders University, PO Box 2100, Adelaide, South Australia 5001, Australia.
Qiao Tuo
Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, PO Box 643, Beijing 100044, China.
Lee Michael S Y
School of Biological Sciences, Flinders University, PO Box 2100, Adelaide, South Australia 5001, Australia. | Earth Sciences Section, South Australian Museum, North Terrace, Adelaide 5000, Australia.
Zhu Min
Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, PO Box 643, Beijing 100044, China.
Long John A
School of Biological Sciences, Flinders University, PO Box 2100, Adelaide, South Australia 5001, Australia.
Article Info
Journal
Systematic biology
Abbr.
Syst Biol
ISSN
1076-836X
Published
2017-07-01
Pages
499-516
Language
English
Region
England
NLM ID
9302532
Subset
IM
Databases
Dryad
10.5061/dryad.v30f1
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