Page 289 - Microbial methane cycling in a warming world From biosphere to atmosphere Michiel H in t Zandt
P. 289

Knoblauch C, Zimmermann U, Blumenberg M et al. Methane turnover and temperature response of methane- oxidizing bacteria in permafrost-affected soils of northeast Siberia. Soil Biol Biochem 2008;40:3004–13.
Koch JC, Gurney K, Wipfli MS. Morphology-dependent water budgets and nutrient fluxes in Arctic thaw ponds. Permafr Periglac Process 2014;25:79–93.
Köchy M, Hiederer R, Freibauer A. Global distribution of soil organic carbon, based on the Harmonized World Soil Database - Part 1: Masses and frequency distribution of SOC stocks for the tropics, permafrost regions, wetlands, and the world. 2015;1:351–65.
Kokelj S V., Jorgenson MT. Advances in thermokarst research. Permafr Periglac Process 2013;24:108–19. Kolb S, Knief C, Dunfield PF et al. Abundance and activity of uncultured methanotrophic bacteria involved in
the consumption of atmospheric methane in two forest soils. Environ Microbiol 2005;7:1150–61.
van der Kolk DA, Flaig PP, Hasiotis ST. Paleoenvironmental reconstruction of a late Cretaceous, muddy, river-
dominated Polar deltaic system: Schrader Bluff-Prince Creek formation transition, Shivugak Bluffs, North
Slope of Alaska, U.S.A. J Sediment Res 2015;85:903–36.
Koskinen K, Pausan MR, Perras AK et al. First insights into the diverse human archaeome: Specific detection of
Archaea in the gastrointestinal tract, lung, and nose and on skin. MBio 2017;8, DOI: 10.1128/mBio.00824-
17.
Kotsyurbenko OR. Trophic interactions in the methanogenic microbial community of low-temperature terrestrial
ecosystems. FEMS Microbiol Ecol 2005a;53:3–13.
Kotsyurbenko OR. Trophic interactions in the methanogenic microbial community of low-temperature terrestrial
ecosystems. FEMS Microbiol Ecol 2005b;53:3–13.
Kotsyurbenko OR, Friedrich MW, Simankova M V. et al. Shift from acetoclastic to H2-dependent
methanogenesis in a West Siberian peat bog at low pH values and isolation of an acidophilic
Methanobacterium strain. Appl Environ Microbiol 2007;73:2344–8.
Kotsyurbenko OR, Glagolev M V., Nozhevnikova AN et al. Competition between homoacetogenic bacteria and
methanogenic archaea for hydrogen at low temperature. FEMS Microbiol Ecol 2001;38:153–9. Kotsyurbenko OR, Nozhevnikova AN, Zavarzin GA. Methanogenic degradation of organic matter by anaerobic
bacteria at low temperature. Chemosphere 1993;27:1745–61.
Koven CD, Ringeval B, Friedlingstein P et al. Permafrost carbon-climate feedbacks accelerate global warming.
Proc Natl Acad Sci U S A 2011;108:14769–74.
Koven CD, Schuur EAG, Schädel C et al. A simplified, data-constrained approach to estimate the permafrost
carbon–climate feedback. Philos Trans R Soc A Math Phys Eng Sci 2015;373:20140423.
Kox MAR, Smolders AJP, Speth DR et al. A novel mesocosm set-up reveals strong methane emission reduction
in submerged peat moss Sphagnum cuspidatum by tightly associated methanotrophs. bioRxiv
2019:536268.
Kraaijenbrink P, van Beurs G, Jansen S et al. Corrosietoeslag op stalen damwandplanken te ruim. Deltares &
STOWA 2014.
Kravchenko IK, Kizilova AK, Bykova SA et al. Molecular analysis of high affinity methane oxidizing
enrichment cultures isolated from a forest biocenosis and agrocenoses. Microbiology 2010;79:114–22. Kühn W, Fiebig K, Hippe H et al. Distribution of cytochromes in methanogenic bacteria. FEMS Microbiol Lett
1983;20:407–10.
Kunapuli U, Lueders T, Meckenstock RU. The use of stable isotope probing to identify key iron-reducing
microorganisms involved in anaerobic benzene degradation. ISME J 2007;1:643–53.
Kuntze K, Vogt C, Richnow H et al. Combined application of PCR-based functional assays for the detection of
aromatic-compound-degrading anaerobes. Appl Environ Microbiol 2011;77:5056–61.
Kuramae EE, Yergeau E, Wong LC et al. Soil characteristics more strongly influence soil bacterial communities
than land-use type. FEMS Microbiol Ecol 2012;79:12–24.
Kurth JM, Op den Camp HJM, Welte CU. Several ways one goal—methanogenesis from unconventional
substrates. Appl Microbiol Biotechnol 2020;104:6839–54.
Kussmaul M, Wilimzig M, Bock E. Methanotrophs and methanogens in masonry. Appl Environ Microbiol
1998;64:4530–2.
Kutzbach L, Wagner D, Pfeiffer E-M. Effect of microrelief and vegetation on methane emission from wet
polygonal tundra, Lena Delta, Northern Siberia. Biogeochemistry 2004;69:341–62.
Kwon MJ, Heimann M, Kolle O et al. Long-term drainage reduces CO2 uptake and increases CO2 emission on a
Siberian floodplain due to shifts in vegetation community and soil thermal characteristics. 2016:4219–35.
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