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PUBMED FOR HANDHELDS

Journal Abstract Search


193 related items for PubMed ID: 38305193

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  • 7. Mechanisms for Electron Uptake by Methanosarcina acetivorans during Direct Interspecies Electron Transfer.
    Holmes DE, Zhou J, Ueki T, Woodard T, Lovley DR.
    mBio; 2021 Oct 26; 12(5):e0234421. PubMed ID: 34607451
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  • 10. Thermodynamic restrictions determine ammonia tolerance of methanogenic pathways in Methanosarcina barkeri.
    Yi Y, Dolfing J, Jin G, Fang X, Han W, Liu L, Tang Y, Cheng L.
    Water Res; 2023 Apr 01; 232():119664. PubMed ID: 36775717
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  • 11. The novel regulator HdrR controls the transcription of the heterodisulfide reductase operon hdrBCA in Methanosarcina barkeri.
    Zhang S, Chen Y, Wang S, Yang Q, Leng H, Zhao P, Guo L, Dai L, Bai L, Cha G.
    Appl Environ Microbiol; 2024 Jun 18; 90(6):e0069124. PubMed ID: 38809047
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  • 12. Carbon-dependent control of electron transfer and central carbon pathway genes for methane biosynthesis in the Archaean, Methanosarcina acetivorans strain C2A.
    Rohlin L, Gunsalus RP.
    BMC Microbiol; 2010 Feb 23; 10():62. PubMed ID: 20178638
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  • 13. Effect of substrate concentration on carbon isotope fractionation during acetoclastic methanogenesis by Methanosarcina barkeri and M. acetivorans and in rice field soil.
    Goevert D, Conrad R.
    Appl Environ Microbiol; 2009 May 23; 75(9):2605-12. PubMed ID: 19251888
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  • 17. Physiological and transcriptomic response to methyl-coenzyme M reductase limitation in Methanosarcina acetivorans.
    Chadwick GL, Dury GA, Nayak DD.
    Appl Environ Microbiol; 2024 Jul 24; 90(7):e0222023. PubMed ID: 38916294
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