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PUBMED FOR HANDHELDS

Journal Abstract Search


109 related items for PubMed ID: 116113

  • 1.
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  • 3. Anaerobic oxidation of short-chain hydrocarbons by marine sulphate-reducing bacteria.
    Kniemeyer O, Musat F, Sievert SM, Knittel K, Wilkes H, Blumenberg M, Michaelis W, Classen A, Bolm C, Joye SB, Widdel F.
    Nature; 2007 Oct 18; 449(7164):898-901. PubMed ID: 17882164
    [Abstract] [Full Text] [Related]

  • 4. [Nomenclature of obligate methylotrophs].
    Romanovskaia VA.
    Mikrobiologiia; 1978 Oct 18; 47(6):1063-72. PubMed ID: 106220
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  • 7. [Thermophilic and thermotolerant bacteria that assimilate methane].
    Malashenko IuR, Romanovskaia VA, Bogachenko VN, Shved AD.
    Mikrobiologiia; 1975 Oct 18; 44(5):855-62. PubMed ID: 1207503
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  • 9. [Method of isolating pure cultures of mesophilic, thermotolerant and thermophilic methane-utilizing bacteria].
    Malashenko IuR, Romanovskaia VA, Bogachenko VN.
    Mikrobiologiia; 1975 Oct 18; 44(4):707-13. PubMed ID: 1101001
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  • 10. [The effect of organic substances on the assimilation of methane by obligate methylotrophs].
    Malashenko IuR, Romanovskaia VA, Bogachenko VN, Kryshtab TP.
    Mikrobiologiia; 1974 Mar 18; 43(2):343-8. PubMed ID: 4857241
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  • 11. Microbial oxidation of gaseous hydrocarbons: epoxidation of C2 to C4 n-alkenes by methylotrophic bacteria.
    Hou CT, Patel R, Laskin AI, Barnabe N.
    Appl Environ Microbiol; 1979 Jul 18; 38(1):127-34. PubMed ID: 39502
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  • 12. [Study of the growth rate of methane-assimilating bacteria in weightlessness].
    Tairbekov MG, Parfenov GP, Zattler K, Krants E, Viunshe L.
    Kosm Biol Aviakosm Med; 1985 Jul 18; 19(1):83-4. PubMed ID: 3919205
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  • 13. [Separation of carbon isotopes during the oxidation of gaseous hydrocarbons by microorganisms].
    Ovsiannikov VM, Lebedev VS, Bogdanova VM, Mogilevskiĭ GA.
    Mikrobiologiia; 1973 Jul 18; 42(4):589-94. PubMed ID: 4791154
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  • 14. [The biology of bacteria that assimilate C1--C2 compounds and the biotechnology aspects of their use].
    Malashenko IuP, Romanovskaia VA, Sokolov IG, Grinberg TA, Pirog TP, Muchnik FV.
    Mikrobiol Z; 1998 Jul 18; 60(6):38-55. PubMed ID: 10077958
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  • 15. [Continuous biosynthesis of epoxypropane in a methanotrophic attached-films reactor].
    Xin JY, Cui JR, Chen JB, Li SB, Xia CG.
    Sheng Wu Gong Cheng Xue Bao; 2002 Jan 18; 18(1):89-93. PubMed ID: 11977608
    [Abstract] [Full Text] [Related]

  • 16. [Refinement of the diagnosis of the genera and species of methane-using bacteria].
    Romanovskaia VA, Malashenko IuR, Bogachenko VN.
    Mikrobiologiia; 1978 Jan 18; 47(1):120-30. PubMed ID: 418311
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  • 17. Microbial oxidation of methane and methanol: isolation of methane-utilizing bacteria and characterization of a facultative methane-utilizing isolate.
    Patel RN, Hou CT, Felix A.
    J Bacteriol; 1978 Oct 18; 136(1):352-8. PubMed ID: 101517
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  • 18. [Lithotrophic metabolic elements in the obligate methylotroph, Methylococcus thermophilus].
    Malashenko IuR, Sokolov IG, Romanovskaia VA, Shkurko IuB.
    Mikrobiologiia; 1979 Oct 18; 48(4):592-8. PubMed ID: 225646
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  • 19. [Role of exogenous carbon dioxide in the metabolism of methane-oxidizing bacteria].
    Romanovskaia VA, Liudvichenko ES, Kryshtab TP, Zhukov VG, Sokolov IG.
    Mikrobiologiia; 1980 Oct 18; 49(5):687-94. PubMed ID: 6777643
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  • 20. Oxidation of methanol by facultative and obligate methylotrophs.
    Michalik J, Raczyńska-Bojanowska K.
    Acta Biochim Pol; 1976 Oct 18; 23(4):375-86. PubMed ID: 827889
    [Abstract] [Full Text] [Related]


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