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PUBMED FOR HANDHELDS

Journal Abstract Search


261 related items for PubMed ID: 24526077

  • 1. Discovery of a novel methanogen prevalent in thawing permafrost.
    Mondav R, Woodcroft BJ, Kim EH, McCalley CK, Hodgkins SB, Crill PM, Chanton J, Hurst GB, VerBerkmoes NC, Saleska SR, Hugenholtz P, Rich VI, Tyson GW.
    Nat Commun; 2014; 5():3212. PubMed ID: 24526077
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  • 3. Genomic insights into redox-driven microbial processes for carbon decomposition in thawing Arctic soils and permafrost.
    Li Y, Xue Y, Roy Chowdhury T, Graham DE, Tringe SG, Jansson JK, Taş N.
    mSphere; 2024 Jul 30; 9(7):e0025924. PubMed ID: 38860762
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  • 4. Microbial network, phylogenetic diversity and community membership in the active layer across a permafrost thaw gradient.
    Mondav R, McCalley CK, Hodgkins SB, Frolking S, Saleska SR, Rich VI, Chanton JP, Crill PM.
    Environ Microbiol; 2017 Aug 30; 19(8):3201-3218. PubMed ID: 28574203
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  • 6. Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrost.
    Ellenbogen JB, Borton MA, McGivern BB, Cronin DR, Hoyt DW, Freire-Zapata V, McCalley CK, Varner RK, Crill PM, Wehr RA, Chanton JP, Woodcroft BJ, Tfaily MM, Tyson GW, Rich VI, Wrighton KC.
    mSystems; 2024 Jan 23; 9(1):e0069823. PubMed ID: 38063415
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  • 8. Discovery and ecogenomic context of a global Caldiserica-related phylum active in thawing permafrost, Candidatus Cryosericota phylum nov., Ca. Cryosericia class nov., Ca. Cryosericales ord. nov., Ca. Cryosericaceae fam. nov., comprising the four species Cryosericum septentrionale gen. nov. sp. nov., Ca. C. hinesii sp. nov., Ca. C. odellii sp. nov., Ca. C. terrychapinii sp. nov.
    Martinez MA, Woodcroft BJ, Ignacio Espinoza JC, Zayed AA, Singleton CM, Boyd JA, Li YF, Purvine S, Maughan H, Hodgkins SB, Anderson D, Sederholm M, Temperton B, Bolduc B, Saleska SR, Tyson GW, Rich VI, IsoGenie Project Coordinators, Saleska SR, Tyson GW, Rich VI.
    Syst Appl Microbiol; 2019 Jan 23; 42(1):54-66. PubMed ID: 30616913
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  • 9. Genome-centric view of carbon processing in thawing permafrost.
    Woodcroft BJ, Singleton CM, Boyd JA, Evans PN, Emerson JB, Zayed AAF, Hoelzle RD, Lamberton TO, McCalley CK, Hodgkins SB, Wilson RM, Purvine SO, Nicora CD, Li C, Frolking S, Chanton JP, Crill PM, Saleska SR, Rich VI, Tyson GW.
    Nature; 2018 Aug 23; 560(7716):49-54. PubMed ID: 30013118
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  • 12. Methanogen community composition and rates of methane consumption in Canadian High Arctic permafrost soils.
    Allan J, Ronholm J, Mykytczuk NC, Greer CW, Onstott TC, Whyte LG.
    Environ Microbiol Rep; 2014 Apr 23; 6(2):136-44. PubMed ID: 24596286
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  • 15. Microbial characterization of a subzero, hypersaline methane seep in the Canadian High Arctic.
    Niederberger TD, Perreault NN, Tille S, Lollar BS, Lacrampe-Couloume G, Andersen D, Greer CW, Pollard W, Whyte LG.
    ISME J; 2010 Oct 23; 4(10):1326-39. PubMed ID: 20445635
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  • 17. Species interactions and distinct microbial communities in high Arctic permafrost affected cryosols are associated with the CH4 and CO2 gas fluxes.
    Altshuler I, Hamel J, Turney S, Magnuson E, Lévesque R, Greer CW, Whyte LG.
    Environ Microbiol; 2019 Oct 23; 21(10):3711-3727. PubMed ID: 31206918
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  • 18. Multi-omics of permafrost, active layer and thermokarst bog soil microbiomes.
    Hultman J, Waldrop MP, Mackelprang R, David MM, McFarland J, Blazewicz SJ, Harden J, Turetsky MR, McGuire AD, Shah MB, VerBerkmoes NC, Lee LH, Mavrommatis K, Jansson JK.
    Nature; 2015 May 14; 521(7551):208-12. PubMed ID: 25739499
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