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PMID: 12698292 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Phylogeny of choanozoa, apusozoa, and other protozoa and early eukaryote megaevolution.

Journal of molecular evolution ·Vol. 56 ·No. 5 ·2003-05-00 ·Pages 540-63

Cavalier-Smith T, Chao EE

Abstract

The primary diversification of eukaryotes involved protozoa, especially zooflagellates-flagellate protozoa without plastids. Understanding the origins of the higher eukaryotic kingdoms (two purely heterotrophic, Animalia and Fungi, and two primarily photosynthetic, Plantae and Chromista) depends on clarifying evolutionary relationships among the phyla of the ancestral kingdom Protozoa. We therefore sequenced 18S rRNA genes from 10 strains from the protozoan phyla Choanozoa and Apusozoa. Eukaryote diversity is encompassed by three early-radiating, arguably monophyletic groups: Amoebozoa, opisthokonts, and bikonts. Our taxon-rich rRNA phylogeny for eukaryotes allowing for intersite rate variation strongly supports the opisthokont clade (animals, Choanozoa, Fungi). It agrees with the view that Choanozoa are sisters of or ancestral to animals and reveals a novel nonflagellate choanozoan lineage, Ministeriida, sister either to choanoflagellates, traditionally considered animal ancestors, or to animals. Maximum likelihood trees suggest that within animals Placozoa are derived from medusozoan Cnidaria (we therefore place Placozoa as a class within subphylum Medusozoa of the Cnidaria) and hexactinellid sponges evolved from demosponges. The bikont and amoebozoan radiations are both very ill resolved. Bikonts comprise the kingdoms Plantae and Chromista and three major protozoan groups: alveolates, excavates, and Rhizaria. Our analysis weakly suggests that Apusozoa, represented by Ancyromonas and the apusomonads ( Apusomonas and the highly diverse and much more ancient genus Amastigomonas, from which it evolved), are not closely related to other Rhizaria and may be the most divergent bikont lineages. Although Ancyromonas and apusomonads appear deeply divergent in 18S rRNA trees, the trees neither refute nor support the monophyly of Apusozoa. The bikont phylum Cercozoa weakly but consistently appears as sister to Retaria (Foraminifera; Radiolaria), together forming a hitherto largely unrecognized major protozoan assemblage (core Rhizaria) in the eukaryote tree. Both 18S rRNA sequence trees and a rare deletion show that nonciliate haplosporidian and paramyxid parasites of shellfish (together comprising the Ascetosporea) are not two separate phyla, as often thought, but part of the Cercozoa, and may be related to the plant-parasitic plasmodiophorids and phagomyxids, which were originally the only parasites included in the Cercozoa. We discuss rRNA trees in relation to other evidence concerning the basal diversification and root of the eukaryotic tree and argue that bikonts and opisthokonts, at least, are holophyletic. Amoebozoa and bikonts may be sisters-jointly called anterokonts, as they ancestrally had an anterior cilium, not a posterior one like opisthokonts; this contrasting ciliary orientation may reflect a primary divergence in feeding mode of the first eukaryotes. Anterokonts also differ from opisthokonts in sterol biosynthesis (cycloartenol versus lanosterol pathway), major exoskeletal polymers (cellulose versus chitin), and mitochondrial cristae (ancestrally tubular not flat), possibly also primary divergences.

MeSH Terms
Amino Acid Motifs Animals Cells, Cultured Cnidaria/classification Eukaryotic Cells Evolution, Molecular Genes, Protozoan Genes, rRNA Genomics Molecular Sequence Data Phylogeny Protein Structure, Tertiary RNA, Protozoan/classification,genetics RNA, Ribosomal, 18S/classification,genetics,ultrastructure Sequence Alignment
Chemicals
RNA, Protozoan RNA, Ribosomal, 18S
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Cavalier-Smith Thomas
Department of Zoology, University of Oxford, South Parks Road, United Kingdom. [email protected]
Chao Ema E-Y
Article Info
Journal
Journal of molecular evolution
Abbr.
J Mol Evol
ISSN
0022-2844
Published
2003-05-00
Pages
540-63
Language
English
Region
Germany
NLM ID
0360051
Subset
IM
Databases
GENBANK
AF053088, AF271997, AF271998, AF271999, AF272000, AY050178, AY050179, AY050180, AY050181, AY050182
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