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Complete genome sequence of Candidatus Ruthia magnifica
Authors:Roeselers Guus  Newton Irene L G  Woyke Tanja  Auchtung Thomas A  Dilly Geoffrey F  Dutton Rachel J  Fisher Meredith C  Fontanez Kristina M  Lau Evan  Stewart Frank J  Richardson Paul M  Barry Kerrie W  Saunders Elizabeth  Detter John C  Wu Dongying  Eisen Jonathan A  Cavanaugh Colleen M
Abstract:The hydrothermal vent clam Calyptogena magnifica (Bivalvia: Mollusca) is a member of the Vesicomyidae. Species within this family form symbioses with chemosynthetic Gammaproteobacteria. They exist in environments such as hydrothermal vents and cold seeps and have a rudimentary gut and feeding groove, indicating a large dependence on their endosymbionts for nutrition. The C. magnifica symbiont, Candidatus Ruthia magnifica, was the first intracellular sulfur-oxidizing endosymbiont to have its genome sequenced (Newton et al. 2007). Here we expand upon the original report and provide additional details complying with the emerging MIGS/MIMS standards. The complete genome exposed the genetic blueprint of the metabolic capabilities of the symbiont. Genes which were predicted to encode the proteins required for all the metabolic pathways typical of free-living chemoautotrophs were detected in the symbiont genome. These include major pathways including carbon fixation, sulfur oxidation, nitrogen assimilation, as well as amino acid and cofactor/vitamin biosynthesis. This genome sequence is invaluable in the study of these enigmatic associations and provides insights into the origin and evolution of autotrophic endosymbiosis.
Keywords:HYDROTHERMAL VENT  CLAM  SULFUR  SYMBIOSIS  CHEMOSYNTHESIS  VESICOMYIDAE
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