Oxymonads Are Closely Related to the Excavate Taxon Trimastix
Open Access
- 1 June 2001
- journal article
- research article
- Published by Oxford University Press (OUP) in Molecular Biology and Evolution
- Vol. 18 (6) , 1034-1044
- https://doi.org/10.1093/oxfordjournals.molbev.a003875
Abstract
Despite intensive study in recent years, large-scale eukaryote phylogeny remains poorly resolved. This is particularly problematic among the groups considered to be potential early branches. In many recent systematic schemes for early eukaryotic evolution, the amitochondriate protists oxymonads and Trimastix have figured prominently, having been suggested as members of many of the putative deep-branching higher taxa. However, they have never before been proposed as close relatives of each other. We amplified, cloned, and sequenced small-subunit ribosomal RNA genes from the oxymonad Pyrsonympha and from several Trimastix isolates. Rigorous phylogenetic analyses indicate that these two protist groups are sister taxa and are not clearly related to any currently established eukaryotic lineages. This surprising result has important implications for our understanding of cellular evolution and high-level eukaryotic phylogeny. Given that Trimastix contains small, electron-dense bodies strongly suspected to be derived mitochondria, this study constitutes the best evidence to date that oxymonads are not primitively amitochondriate. Instead, Trimastix and oxymonads may be useful organisms for investigations into the evolution of the secondary amitochondriate condition. All higher taxa involving either oxymonads or Trimastix may require modification or abandonment. Affected groups include four contemporary taxa given the rank of phylum (Metamonada, Loukozoa, Trichozoa, Percolozoa), and the informal excavate taxa. A new “phylum-level” taxon may be warranted for oxymonads and Trimastix.Keywords
This publication has 41 references indexed in Scilit:
- The characterization of enzymatically amplified eukaryotic 16S-like rRNA-coding regionsPublished by Elsevier ,2003
- Malawimonas jakobiformis n. gen., n. sp. (Malawimonadidae n. fam.): A Jakoba‐like Heterotrophic Nanoflagellate with Discoidal Mitochondrial CristaeThe Journal of Eukaryotic Microbiology, 1999
- New Insights into the Phylogeny of Trichomonads Inferred from Small Subunit rRNA SequencesProtist, 1998
- History assignment: when was the mitochondrion founded?Current Opinion in Genetics & Development, 1997
- The asexual ploidy cycle and the origin of sexNature, 1994
- Alternatives to Meiosis: The Unusual Genetics of Red Algae, Microsporidia, and OthersJournal of Theoretical Biology, 1993
- Phylogenetic Analysis of the Diplomonadida (Wenyon, 1926) Brugerolle, 1975: Evidence for Heterochrony in Protozoa and Against Giardia lamblia as a “Missing Link”The Journal of Protozoology, 1992
- Evaluation of the maximum likelihood estimate of the evolutionary tree topologies from DNA sequence data, and the branching order in hominoideaJournal of Molecular Evolution, 1989
- The ultrastructure of Pyrsonympha and its associated microorganismsJournal of Morphology, 1974
- Brief Accounts of the Sexual Cycles of the Flagellates of CryptocercusThe Journal of Protozoology, 1956