4.8 Article

The Organellar Genome and Metabolic Potential of the Hydrogen-Producing Mitochondrion of Nyctotherus ovalis

期刊

MOLECULAR BIOLOGY AND EVOLUTION
卷 28, 期 8, 页码 2379-2391

出版社

OXFORD UNIV PRESS
DOI: 10.1093/molbev/msr059

关键词

hydrogenosome; mitochondrion; horizontal gene transfer; evolution; adaptation; Nyctotherus

资金

  1. European Union [QLK 3-2002-02151]
  2. Portuguese Foundation for Science and Technology-FCT [SFRH/BD/32959/2006]
  3. NWO [050-71-058, 016.111.075]
  4. Netherlands Genomics Initiative [050-71-555]
  5. Bolsas Rui Tavares 2010
  6. Fundação para a Ciência e a Tecnologia [SFRH/BD/32959/2006] Funding Source: FCT

向作者/读者索取更多资源

It is generally accepted that hydrogenosomes (hydrogen-producing organelles) evolved from a mitochondrial ancestor. However, until recently, only indirect evidence for this hypothesis was available. Here, we present the almost complete genome of the hydrogen-producing mitochondrion of the anaerobic ciliate Nyctotherus ovalis and show that, except for the notable absence of genes encoding electron transport chain components of Complexes III, IV, and V, it has a gene content similar to the mitochondrial genomes of aerobic ciliates. Analysis of the genome of the hydrogen-producing mitochondrion, in combination with that of more than 9,000 genomic DNA and cDNA sequences, allows a preliminary reconstruction of the organellar metabolism. The sequence data indicate that N. ovalis possesses hydrogen-producing mitochondria that have a truncated, two step (Complex I and II) electron transport chain that uses fumarate as electron acceptor. In addition, components of an extensive protein network for the metabolism of amino acids, defense against oxidative stress, mitochondrial protein synthesis, mitochondrial protein import and processing, and transport of metabolites across the mitochondrial membrane were identified. Genes for MPV17 and ACN9, two hypothetical proteins linked to mitochondrial disease in humans, were also found. The inferred metabolism is remarkably similar to the organellar metabolism of the phylogenetically distant anaerobic Stramenopile Blastocystis. Notably, the Blastocystis organelle and that of the related flagellate Proteromonas lacertae also lack genes encoding components of Complexes III, IV, and V. Thus, our data show that the hydrogenosomes of N. ovalis are highly specialized hydrogen-producing mitochondria.

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