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References
Stein LY, Klotz MG. Nitrifying and denitrifying pathways of methanotrophic bacteria. Biochemical Society Transactions. Vol 39. Portland Press, 2011, 1826–31.
Steinberg LM, Regan JM. Phylogenetic comparison of the methanogenic communities from an acidic, oligotrophic fen and an anaerobic digester treating municipal wastewater sludge. Appl Environ Microbiol 2008;74:6663–71.
Steinle L, Schmidt M, Bryant L et al. Linked sediment and water-column methanotrophy at a man-made gas blowout in the North Sea: Implications for methane budgeting in seasonally stratified shallow seas. Limnol Oceanogr 2016;61:S367–86.
Steven B, Briggs G, McKay CP et al. Characterization of the microbial diversity in a permafrost sample from the Canadian high Arctic using culture-dependent and culture-independent methods. FEMS Microbiol Ecol 2007;59:513–23.
Steven B, Léveillé R, Pollard WH et al. Microbial ecology and biodiversity in permafrost. Extremophiles 2006;10:259–67.
Stevens JM, Mavridou DAI, Hamer R et al. Cytochrome c biogenesis System I. FEBS J 2011;278:4170–8. Stocker R. Marine microbes see a sea of gradients. Science 2012;338:628–33.
Stocker TF, Qin D, Plattner GK et al. Climate Change 2013 the Physical Science Basis: Working Group I
Contribution to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change.
Cambridge University Press, 2013.
Stolz JF. Gaia and her microbiome. FEMS Microbiol Ecol 2017;93:1–13.
Strąpoć D, Picardal F, Turich C et al. Methane-producing microbial community in a coal bed of the Illinois
basin. Appl Environ Microbiol 2008;74:2424–32.
Strauss J, Schirrmeister L, Grosse G et al. The deep permafrost carbon pool of the Yedoma region in Siberia and
Alaska. Geophys Res Lett 2013;40:6165–70.
Strauss J, Schirrmeister L, Grosse G et al. Deep Yedoma permafrost: A synthesis of depositional characteristics
and carbon vulnerability. Earth-Science Rev 2017;172:75–86.
Strauss J, Schirrmeister L, Wetterich S et al. Grain-size properties and organic-carbon stock of Yedoma Ice
Complex permafrost from the Kolyma lowland, northeastern Siberia. Global Biogeochem Cycles
2012;26:1–12.
Strohm TO, Griffin B, Zumft WG et al. Growth yields in bacterial denitrification and nitrate ammonification.
Appl Environ Microbiol 2007;73:1420–4.
Summers ZM, Fogarty HE, Leang C et al. Direct exchange of electrons within aggregates of an evolved
syntrophic coculture of anaerobic bacteria. Science 2010;330:1413–5.
Suzek BE, Wang Y, Huang H et al. UniRef clusters: a comprehensive and scalable alternative for improving
sequence similarity searches. Bioinformatics 2014;31:926–32.
Suzuki M, Arai H, Ishii M et al. Gene structure and expression profile of cytochrome bc nitric oxide reductase
from Hydrogenobacter thermophilus TK-6. Biosci Biotechnol Biochem 2006;70:1666–71.
Taenzer L, Carini PC, Masterson AM et al. Microbial methane from methylphosphonate isotopically records source. Geophys Res Lett 2020;47, DOI: 10.1029/2019GL085872.
Takai K, Horikoshi K. Rapid detection and quantification of members of the archaeal community by quantitative PCR using fluorogenic probes. Appl Environ Microbiol 2000;66:5066–72.
Tamocai C, Canadell JG, Schuur EAG et al. Soil organic carbon pools in the northern circumpolar permafrost region. Global Biogeochem Cycles 2009;23:1–11.
Tan L, Ge Z, Zhou X et al. Conversion of coastal wetlands, riparian wetlands, and peatlands increases greenhouse gas emissions: A global meta-analysis. Glob Chang Biol 2020;26:1638–53.
Tang HY, Holmes DE, Ueki T et al. Iron corrosion via direct metal-microbe electron transfer. MBio 2019;10, DOI: 10.1128/mBio.00303-19.
Tang P, Zhu Q, Wu Z et al. Methane activation: The past and future. Energy Environ Sci 2014;7:2580–91. Tang Y-Q, Ji P, Hayashi J et al. Characteristic microbial community of a dry thermophilic methanogenic
digester: Its long-term stability and change with feeding. Appl Microbiol Biotechnol 2011;91:1447–61. Tao X, Feng J, Yang Y et al. Winter warming in Alaska accelerates lignin decomposition contributed by
Proteobacteria. Microbiome 2020;8:84.
Tas N, Prestat E, McFarland JW et al. Impact of fire on active layer and permafrost microbial communities and
metagenomes in an upland Alaskan boreal forest. ISME J 2014;8:1904–19.
Taş N, Prestat E, Wang S et al. Landscape topography structures the soil microbiome in arctic polygonal tundra.
Nat Commun 2018;9:1–13. 300



























































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