Evolutionary relationships of the coelacanth, lungfishes, and tetrapods based on the 28S ribosomal RNA gene.
Open Access
- 28 May 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (11) , 5449-5454
- https://doi.org/10.1073/pnas.93.11.5449
Abstract
The origin of land vertebrates was one of the major transitions in the history of vertebrates. Yet, despite many studies that are based on either morphology or molecules, the phylogenetic relationships among tetrapods and the other two living groups of lobe-finned fishes, the coelacanth and the lungfishes, are still unresolved and debated. Knowledge of the relationships among these lineages, which originated back in the Devonian, has profound implications for the reconstruction of the evolutionary scenario of the conquest of land. We collected the largest molecular data set on this issue so far, about 3,500 base pairs from seven species of the large 28S nuclear ribosomal gene. All phylogenetic analyses (maximum parsimony, neighbor-joining, and maximum likelihood) point toward the hypothesis that lungfishes and coelacanths form a monophyletic group and are equally closely related to land vertebrates. This evolutionary hypothesis complicates the identification of morphological or physiological preadaptations that might have permitted the common ancestor of tetrapods to colonize land. This is because the reconstruction of its ancestral conditions would be hindered by the difficulty to separate uniquely derived characters from shared derived characters in the coelacanth/lungfish and tetrapod lineages. This molecular phylogeny aids in the reconstruction of morphological evolutionary steps by providing a framework; however, only paleontological evidence can determine the sequence of morphological acquisitions that allowed lobe-finned fishes to colonize land.Keywords
This publication has 24 references indexed in Scilit:
- CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choiceNucleic Acids Research, 1994
- Relationship among coelacanths, lungfishes, and tetrapods: A phylogenetic analysis based on mitochondrial cytochrome oxidase I gene sequencesJournal of Molecular Evolution, 1994
- Relations of fish and tetrapodsNature, 1993
- Variation among human 28S ribosomal RNA genes.Proceedings of the National Academy of Sciences, 1985
- Phylogenetic relationships among eukaryotic kingdoms inferred from ribosomal RNA sequencesJournal of Molecular Evolution, 1985
- Comparative Anatomy of 16-S-like Ribosomal RNAPublished by Elsevier ,1985
- The complete nucleotide sequence of mouse 28S rRNA gene. Implications for the process of size increase of the large subunit rRNA In higher eukaryotesNucleic Acids Research, 1984
- Primary and secondary structure of rat 28 S ribosomal RNANucleic Acids Research, 1984
- Sequence analysis of 28S ribosomal DNA from the amphibianXenopus laevisNucleic Acids Research, 1983
- Repeated Genes in EukaryotesAnnual Review of Biochemistry, 1980