Ontogeny Discombobulates Phylogeny: Paedomorphosis and Higher-Level Salamander Relationships
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Open Access
- 1 February 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Systematic Biology
- Vol. 54 (1) , 91-110
- https://doi.org/10.1080/10635150590906037
Abstract
Evolutionary developmental biology (“evo-devo”) has revolutionized evolutionary biology but has had relatively little impact on systematics. We show that similar large-scale developmental changes in distantly related lineages can dramatically mislead phylogenetic analyses based on morphological data. Salamanders are important model systems in many fields of biology and are of special interest in that many species are paedomorphic and thus never complete metamorphosis. A recent study of higher-level salamander phylogeny placed most paedomorphic families in a single clade based on morphological data. Here, we use new molecular and morphological data to show that this result most likely was caused by the misleading effects of paedomorphosis. We also provide a well-supported estimate of higher-level salamander relationships based on combined molecular and morphological data. Many authors have suggested that paedomorphosis may be problematic in studies of salamander phylogeny, but this hypothesis has never been tested with a rigorous phylogenetic analysis. We find that the misleading effects of paedomorphosis on phylogenetic analysis go beyond the sharing of homoplastic larval traits by paedomorphic adults, and the problem therefore is not solved by simply excluding suspected paedomorphic characters. Instead, two additional factors are critically important in causing paedomorphic species to be phylogenetically “misplaced”: (1) the absence of clade-specific synapomorphies that develop during metamorphosis in nonpaedomorphic taxa and allow their “correct” placement and (2) parallel adaptive changes associated with the aquatic habitat of the larval stage. Our results suggest that the effects of paedomorphosis on phylogenetic analyses may be complex, difficult to detect, and can lead to results that are both wrong and statistically well supported by parsimony and Bayesian analyses.Keywords
This publication has 51 references indexed in Scilit:
- Phylogenetic Relationships and Systematic Revision of Central Texas Hemidactyliine Plethodontid SalamandersHerpetological Monographs, 2000
- Convergent evolution and character correlation in burrowing reptiles: towards a resolution of squamate relationshipsBiological Journal of the Linnean Society, 1998
- Morphological Correlations in Evolution: Consequences for Phylogenetic AnalysisThe Quarterly Review of Biology, 1998
- Bayes FactorsJournal of the American Statistical Association, 1995
- Phylogenetic interpretation of ontogenetic change: sorting out the actual and artefactual in an empirical case study of centrarchid fishesZoological Journal of the Linnean Society, 1993
- A Molecular Perspective on Lissamphibian PhylogenyHerpetological Monographs, 1993
- The general stochastic model of nucleotide substitutionJournal of Theoretical Biology, 1990
- Ontogeny of the hyobranchial apparatus in the salamanders Ambystoma talpoideum (Ambystomatidae) and Notophthalmus viridescens (Salamandridae): The ecological morphology of two neotenic strategiesJournal of Morphology, 1987
- Heterochronic mechanisms of morphological diversification and evolutionary change in the neotropical salamander, Bolitoglossa occidentalis (Amphibia: Plethodontidae)Journal of Morphology, 1981
- Enzyme Clearing of Alcian Blue Stained Whole Small Vertebrates for Demonstration of CartilageStain Technology, 1977