Phylogenomic analyses support the monophyly of Excavata and resolve relationships among eukaryotic “supergroups”
Top Cited Papers
- 10 March 2009
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (10) , 3859-3864
- https://doi.org/10.1073/pnas.0807880106
Abstract
Nearly all of eukaryotic diversity has been classified into 6 suprakingdom-level groups (supergroups) based on molecular and morphological/cell-biological evidence; these are Opisthokonta, Amoebozoa, Archaeplastida, Rhizaria, Chromalveolata, and Excavata. However, molecular phylogeny has not provided clear evidence that either Chromalveolata or Excavata is monophyletic, nor has it resolved the relationships among the supergroups. To establish the affinities of Excavata, which contains parasites of global importance and organisms regarded previously as primitive eukaryotes, we conducted a phylogenomic analysis of a dataset of 143 proteins and 48 taxa, including 19 excavates. Previous phylogenomic studies have not included all major subgroups of Excavata, and thus have not definitively addressed their interrelationships. The enigmatic flagellate Andalucia is sister to typical jakobids. Jakobids (including Andalucia), Euglenozoa and Heterolobosea form a major clade that we name Discoba. Analyses of the complete dataset group Discoba with the mitochondrion-lacking excavates or "metamonads" (diplomonads, parabasalids, and Preaxostyla), but not with the final excavate group, Malawimonas. This separation likely results from a long-branch attraction artifact. Gradual removal of rapidly-evolving taxa from the dataset leads to moderate bootstrap support (69%) for the monophyly of all Excavata, and 90% support once all metamonads are removed. Most importantly, Excavata robustly emerges between unikonts (Amoebozoa + Opisthokonta) and "megagrouping" of Archaeplastida, Rhizaria, and chromalveolates. Our analyses indicate that Excavata forms a monophyletic suprakingdom-level group that is one of the 3 primary divisions within eukaryotes, along with unikonts and a megagroup of Archaeplastida, Rhizaria, and the chromalveolate lineages.Keywords
This publication has 62 references indexed in Scilit:
- Phylogenomics reveals a new ‘megagroup’ including most photosynthetic eukaryotesBiology Letters, 2008
- Phylogenomics Reshuffles the Eukaryotic SupergroupsPLOS ONE, 2007
- Toward Resolving the Eukaryotic Tree: The Phylogenetic Positions of Jakobids and CercozoansCurrent Biology, 2007
- Multiple Gene Phylogenies Support the Monophyly of Cryptomonad and Haptophyte Host LineagesCurrent Biology, 2007
- RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed modelsBioinformatics, 2006
- Evaluating Support for the Current Classification of Eukaryotic DiversityPLoS Genetics, 2006
- The New Higher Level Classification of Eukaryotes with Emphasis on the Taxonomy of ProtistsThe Journal of Eukaryotic Microbiology, 2005
- Lateral gene transfer in eukaryotesCellular and Molecular Life Sciences, 2005
- The identity and composition of the EuglenozoaArchiv für Protistenkunde, 1997
- Percolomonas cosmopolitus(Ruinen) n.gen., a new type of filter feeding flagellate from marine planktonJournal of the Marine Biological Association of the United Kingdom, 1986