Literature DB >> 3340165

Origin of the eukaryotic nucleus determined by rate-invariant analysis of rRNA sequences.

J A Lake1.   

Abstract

The origin of the eukaryotic nucleus is difficult to reconstruct. Eukaryotic organelles (chloroplast, mitochondrion) are eubacterial endosymbionts, but the source of nuclear genes has been obscured by multiple nucleotide substitutions. Using evolutionary parsimony, a newly developed rate-invariant treeing algorithm, the eukaryotic ribosomal rRNA genes are shown to have evolved from the eocytes, a group of extremely thermophilic, sulphur-metabolizing, anucleate cells. The deepest bifurcation yet found separates the reconstructed tree into two taxonomic divisions. These are a proto-eukaryotic group (karyotes) and an essentially bacterial one (parkaryotes). Within the precision of the rooting procedure, the tree is not consistent with either the prokaryotic-eukaryotic or the archaebacterial-eubacterial-eukaryotic groupings. It implies that the last common ancestor of extant life, and the early ancestors of eukaryotes, probably lacked nuclei, metabolized sulphur and lived at near-boiling temperatures.

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Year:  1988        PMID: 3340165     DOI: 10.1038/331184a0

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  88 in total

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Review 4.  The falsifiability of the models for the origin of eukaryotes.

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Review 5.  The origin of eukaryotes and their relationship with the Archaea: are we at a phylogenomic impasse?

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Authors:  James A Cotton; James O McInerney
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7.  Small ribosomal subunit RNA sequences, evolutionary relationships among different life forms, and mitochondrial origins.

Authors:  Y Van de Peer; J M Neefs; R De Wachter
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8.  Compositional statistics: an improvement of evolutionary parsimony and its application to deep branches in the tree of life.

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9.  Phylogenetic relationships of the Santalales and relatives.

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10.  Molecular cloning of the transcription factor TFIIB homolog from Sulfolobus shibatae.

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