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Methanogens genome

Bult CJ, White O, Olsen GJ, et al. 1996. Complete genome sequence of the methanogenic archaeon, Methanococcus jannaschii. Science 273 1058-73. [Pg.154]

Examination of the complete genome sequences of methanogens revealed an apparent lack of cysteinyl-tRNA synthetase. However, prolyl-tRNA synthetase does correctly aminoacylate the tRNAs for both proline and cysteine in these archaeobacteria.271 272a... [Pg.1697]

Vivares CP, Gouy M, Thomaratb F, Meteniera G (2002) Functional and evolutionary analysis of a eukaryotic parasitic genome. Curr Opin Microbiol 5 499-505 Vogels GD, Hoppe WE, Stumm CK (1980) Association of methanogenic bacteria with rumen ciliates. Appl Environ Microbiol 40 608-612... [Pg.160]

Bult CJ, White O, Olsen GJ, Zhou L, Fleischmann RD, Sutton GG et al (1996) Complete genome sequence of the methanogenic archaeon Methanococcus jannaschii. Science 273 1058-1072 Canback B, Andersson SGE, Kurland CG (2002) The global phylogeny of glycolytic enzymes. Proc Natl Acad Sci USA 99 6097-6102... [Pg.233]

Graham DE, White RH. Elucidation of methanogenic coenzyme hiosyntheses from spectroscopy to genomics. Nat. Prod. Rep. 2002 19 133-147. [Pg.259]

Archaebacteria exhibit different sensitivities to aphidicolin (Table 3) growth of halobacteria and of some methanogens is completely or partially inhibited with 20 pg/ml of aphidicolin, whereas that of other methanogens and of S. acidocaldarius, the only thermophile tested, is resistant [124—128]. In the case of H. halobium, aphidicolin specifically inhibits in vivo DNA replication and induces cell filamentation [124,125]. This result indicates that the target of aphidicolin in halobacteria is implicated in the replication of the genome. [Pg.352]


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See also in sourсe #XX -- [ Pg.326 , Pg.331 , Pg.498 , Pg.520 ]




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