Page 287 - Microbial methane cycling in a warming world From biosphere to atmosphere Michiel H in t Zandt
P. 287
Jetten MSM, Stams AJM, Zehnder AJB. Methanogenesis from acetate: a comparison of the acetate metabolism in Methanothrix soehngenii and Methanosarcina spp. FEMS Microbiol Lett 1992;88:181–97.
Joergensen L, Degn H. Mass spectrometric measurements of methane and oxygen utilization by methanotrophic bacteria. FEMS Microbiol Lett 1983;20:331–5.
Jones EJP, Voytek MA, Corum MD et al. Stimulation of methane generation from nonproductive coal by addition of nutrients or a microbial consortium. Appl Environ Microbiol 2010;76:7013–22.
de Jong AEE, in ‘t Zandt MH, Meisel OH et al. Increases in temperature and nutrient availability positively affect methane-cycling microorganisms in Arctic thermokarst lake sediments. Environ Microbiol 2018;20:4314–27.
Jongman RHG. Nature conservation planning in Europe: developing ecological networks. Landsc Urban Plan 1995;32:169–83.
Joosten H. The global peatland CO2 picture: peatland status and drainage related emissions in all the countries of the world. Wetl Int 2009.
Joosten H, Clarke D. Wise Use of Mires and Peatlands - Background and Principles., 2002.
Joosten H, Tanneberger F, Moen A. Mires and Peatlands of Europe., 2017.
Jorgenson MT, Romanovsky V, Harden J et al. Resilience and vulnerability of permafrost to climate change.
Can J For Res 2010;40:1219–36.
Jorgenson MT, Shur Y. Evolution of lakes and basins in northern Alaska and discussion of the thaw lake cycle. J
Geophys Res Earth Surf 2007;112:1–12.
Jorgenson MT, Shur YL, Pullman ER. Abrupt increase in permafrost degradation in Arctic Alaska. Geophys Res
Lett 2006;33:1–4.
Joulian C, Ollivier B, Patel BKC et al. Phenotypic and phylogenetic characterization of dominant culturable
methanogens isolated from ricefield soils. FEMS Microbiol Ecol 1998;25:135–45.
Joulian C, Patel B, Ollivier B et al. Methanobacterium oryzae sp. nov., a novel methanogenic rod isolated from a
Philippines ricefield. Int J Syst Evol Microbiol 2000;50:525–8.
Judd A, Davies G, Wilson J et al. Contributions to atmospheric methane by natural seepages on the U.K
continental shelf. Mar Geol 1997;Vol. 137:165–89.
Judd AG, Hovland M, Dimitrov LI et al. The geological methane budget at continental margins and its influence
on climate change. Geofluids 2002;2:109–26.
Juottonen H, Fontaine L, Wurzbacher C et al. Archaea in boreal Swedish lakes are diverse, dominated by
Woesearchaeota and follow deterministic community assembly. Environ Microbiol 2020:1462- 2920.15058.
Kage S, Kudo K, Ikeda H et al. Simultaneous determination of formate and acetate in whole blood and urine from humans using gas chromatography – mass spectrometry. J Chromatogr B 2004;805:113–7.
Kalyuzhnaya MG, Yang S, Rozova ON et al. Highly efficient methane biocatalysis revealed in a methanotrophic bacterium. Nat Commun 2013;4:2785.
Kampbell DH, Vandegrift SA. Analysis of dissolved methane, ethane, and ethylene in ground water by a standard gas chromatographic technique. J Chromatogr Sci 1998;36:253–6.
Kanevskiy M, Shur Y, Fortier D et al. Cryostratigraphy of late Pleistocene syngenetic permafrost (Yedoma) in northern Alaska, Itkillik River exposure. Quat Res 2011;75:584–96.
Kang DD, Froula J, Egan R et al. MetaBAT, an efficient tool for accurately reconstructing single genomes from complex microbial communities. PeerJ 2015:1–15.
Kankaala P, Huotari J, Peltomaa E et al. Methanotrophic activity in relation to methane efflux and total heterotrophic bacterial production in a stratified, humic, boreal lake. Limnol Oceanogr 2006;51:1195–204.
Kanso S, Greene AC, Patel BKC. Bacillus subterraneus sp. nov., an iron- and manganese-reducing bacterium from a deep subsurface Australian thermal aquifer. Int J Syst Evol Microbiol 2002;52:869–74.
Kao-Kniffin J, Woodcroft BJ, Carver SM et al. Archaeal and bacterial communities across a chronosequence of drained lake basins in Arctic Alaska. Nat Sci Reports 2015;5:1–12.
Karlsson JM, Jaramillo F, Destouni G. Hydro-climatic and lake change patterns in Arctic permafrost and non- permafrost areas. J Hydrol 2015;529:134–45.
Keppler F, Hamilton JTG, Braß M et al. Methane emissions from terrestrial plants under aerobic conditions. Nature 2006;439:187–91.
Kevorkian R, Callahan S, Winstead R et al. ANME-1 archaea drive methane accumulation and removal in estuarine sediments. bioRxiv 2020:2020.02.24.963215.
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