The oldest platypus and its bearing on divergence timing of the platypus and echidna clades
- 29 January 2008
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 105 (4) , 1238-1242
- https://doi.org/10.1073/pnas.0706385105
Abstract
Monotremes have left a poor fossil record, and paleontology has been virtually mute during two decades of discussion about molecular clock estimates of the timing of divergence between the platypus and echidna clades. We describe evidence from high-resolution x-ray computed tomography indicating that Teinolophos, an Early Cretaceous fossil from Australia's Flat Rocks locality (121-112.5 Ma), lies within the crown clade Monotremata, as a basal platypus. Strict molecular clock estimates of the divergence between platypus and echidnas range from 17 to 80 Ma, but Teinolophos suggests that the two monotreme clades were already distinct in the Early Cretaceous, and that their divergence may predate even the oldest strict molecular estimates by at least 50%. We generated relaxed molecular clock models using three different data sets, but only one yielded a date overlapping with the age of Teinolophos. Morphology suggests that Teinolophos is a platypus in both phylogenetic and ecological aspects, and tends to contradict the popular view of rapid Cenozoic monotreme diversification. Whereas the monotreme fossil record is still sparse and open to interpretation, the new data are consistent with much slower ecological, morphological, and taxonomic diversification rates for monotremes than in their sister taxon, the therian mammals. This alternative view of a deep geological history for monotremes suggests that rate heterogeneities may have affected mammalian evolution in such a way as to defeat strict molecular clock models and to challenge even relaxed molecular clock models when applied to mammalian history at a deep temporal scale.Keywords
This publication has 55 references indexed in Scilit:
- The delayed rise of present-day mammalsNature, 2007
- Description of a cranial endocast from a fossil platypus,Obdurodon dicksoni (Monotremata, Ornithorhynchidae), and the relevance of endocranial characters to monotreme monophylyJournal of Morphology, 2006
- Comment on "Independent Origins of Middle Ear Bones in Monotremes and Therians" (I)Science, 2005
- Evidence for an early appearance of modern post-switch immunoglobulin isotypes in mammalian evolution (II); cloning of IgE, IgG1 and IgG2 from a monotreme, the duck-billed platypus, Ornithorhynchus anatinusEuropean Journal of Immunology, 2002
- The platypus is not a rodent: DNA hybridization, amniote phylogeny and the palimpsest theoryPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1998
- Coevolution of the Mammalian Middle Ear and NeocortexScience, 1996
- A new family of monotremes feom the Creataceous of AustraliaNature, 1995
- Land mammal biostratigraphy and magnetostratigraphy of the Etadunna Formation (late Oligocene) of South AustraliaJournal of Vertebrate Paleontology, 1994
- Evolution of the monotremesEuropean Journal of Biochemistry, 1993
- Globin Macromolecular Sequences in Marsupials and MonotremesAustralian Journal of Zoology, 1989