Literature DB >> 11961110

Retortamonad flagellates are closely related to diplomonads--implications for the history of mitochondrial function in eukaryote evolution.

Jeffrey D Silberman1, Alastair G B Simpson, Jaroslav Kulda, Ivan Cepicka, Vladimir Hampl, Patricia J Johnson, Andrew J Roger.   

Abstract

We present the first molecular phylogenetic examination of the evolutionary position of retortamonads, a group of mitochondrion-lacking flagellates usually found as commensals of the intestinal tracts of vertebrates. Our phylogenies include small subunit ribosomal gene sequences from six retortamonad isolates-four from mammals and two from amphibians. All six sequences were highly similar (95%-99%), with those from mammals being almost identical to each other. All phylogenetic methods utilized unequivocally placed retortamonads with another amitochondriate group, the diplomonads. Surprisingly, all methods weakly supported a position for retortamonads cladistically within diplomonads, as the sister group to Giardia. This position would conflict with a single origin and uniform retention of the doubled-cell organization displayed by most diplomonads, but not by retortamonads. Diplomonad monophyly was not rejected by Shimodaira-Hasegawa, Kishino-Hasegawa, and expected likelihood weights methods but was marginally rejected by parametric bootstrapping. Analyses with additional phylogenetic markers are needed to test this controversial branching order within the retortamonad + diplomonad clade. Nevertheless, the robust phylogenetic association between diplomonads and retortamonads suggests that they share an amitochondriate ancestor. Because strong evidence indicates that diplomonads have secondarily lost their mitochondria (rather than being ancestrally amitochondriate), our results imply that retortamonads are also secondarily amitochondriate. Of the various groups of eukaryotes originally suggested to be primitively amitochondriate under the archezoa hypothesis, all have now been found to have physical or genetic mitochondrial relics (or both) or form a robust clade with an organism with such a relic.

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Year:  2002        PMID: 11961110     DOI: 10.1093/oxfordjournals.molbev.a004135

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  12 in total

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Authors:  Maria José Barberà; Iñaki Ruiz-Trillo; Julia Y A Tufts; Amandine Bery; Jeffrey D Silberman; Andrew J Roger
Journal:  Eukaryot Cell       Date:  2010-10-29

3.  The symbiotic fauna of the African termite Hodotermes mossambicus identification of four flagellate species of the genera Spironympha, Trichomonoides and Retortamonas.

Authors:  Guy Brugerolle
Journal:  Parasitol Res       Date:  2005-12-21       Impact factor: 2.289

4.  Phylogenomic analyses support the monophyly of Excavata and resolve relationships among eukaryotic "supergroups".

Authors:  Vladimir Hampl; Laura Hug; Jessica W Leigh; Joel B Dacks; B Franz Lang; Alastair G B Simpson; Andrew J Roger
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-23       Impact factor: 11.205

5.  Only six kingdoms of life.

Authors:  Thomas Cavalier-Smith
Journal:  Proc Biol Sci       Date:  2004-06-22       Impact factor: 5.349

6.  A genomic survey of the fish parasite Spironucleus salmonicida indicates genomic plasticity among diplomonads and significant lateral gene transfer in eukaryote genome evolution.

Authors:  Jan O Andersson; Asa M Sjögren; David S Horner; Colleen A Murphy; Patricia L Dyal; Staffan G Svärd; John M Logsdon; Mark A Ragan; Robert P Hirt; Andrew J Roger
Journal:  BMC Genomics       Date:  2007-02-14       Impact factor: 3.969

7.  Evaluating support for the current classification of eukaryotic diversity.

Authors:  Laura Wegener Parfrey; Erika Barbero; Elyse Lasser; Micah Dunthorn; Debashish Bhattacharya; David J Patterson; Laura A Katz
Journal:  PLoS Genet       Date:  2006-11-13       Impact factor: 5.917

8.  Evolution of four gene families with patchy phylogenetic distributions: influx of genes into protist genomes.

Authors:  Jan O Andersson; Robert P Hirt; Peter G Foster; Andrew J Roger
Journal:  BMC Evol Biol       Date:  2006-03-21       Impact factor: 3.260

9.  Bax function in the absence of mitochondria in the primitive protozoan Giardia lamblia.

Authors:  Adrian B Hehl; Attila Regos; Elisabeth Schraner; André Schneider
Journal:  PLoS One       Date:  2007-05-30       Impact factor: 3.240

10.  Molecular phylogeny of diplomonads and enteromonads based on SSU rRNA, alpha-tubulin and HSP90 genes: implications for the evolutionary history of the double karyomastigont of diplomonads.

Authors:  Martin Kolisko; Ivan Cepicka; Vladimir Hampl; Jessica Leigh; Andrew J Roger; Jaroslav Kulda; Alastair G B Simpson; Jaroslav Flegr
Journal:  BMC Evol Biol       Date:  2008-07-15       Impact factor: 3.260

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