Page 276 - Microbial methane cycling in a warming world From biosphere to atmosphere Michiel H in t Zandt
P. 276

References
Bhalla GS. Inside Sundarbans: Wildlife and climate displacements haunt partition refugees. Econ Times 2018. Bischoff J, Mangelsdorf K, Gattinger A et al. Response of methanogenic archaea to Late Pleistocene and
Holocene climate changes in the Siberian Arctic. Global Biogeochem Cycles 2013;27:305–17. Biskaborn BK, Smith SL, Noetzli J et al. Permafrost is warming at a global scale. Nat Commun 2019;10:264. Bižić-Ionescu M, Ionescu D, Günthel M et al. Oxic methane cycling: new evidence for methane formation in
oxic lake water. Biogenesis of Hydrocarbons. Springer International Publishing, 2018, 1–22.
Bjune AE, Birks HJB, Seppä H. Holocene vegetation and climate history on a continental-oceanic transect in
northern Fennoscandia based on pollen and plant macrofossils. Boreas 2004;33:211–23.
Black RF. Gubik Formation of Quaternary Age in Northern Alaska. U.S. Government Printing Office, 1964. Blake LI, Tveit A, Øvreås L et al. Response of methanogens in Arctic sediments to temperature and
methanogenic substrate availability. PLoS One 2015;10:1–18.
Blodau C, Rees R, Flessa H et al. A snapshot of CO2 and CH4 evolution in a thermokarst pond near Igarka,
northern Siberia. J Geophys Res 2008;113:1–8.
Van Bodegom PM, Scholten JCM, Stams AJM. Direct inhibition of methanogenesis by ferric iron. FEMS
Microbiol Ecol 2004;49:261–8.
Bodelier PL., Laanbroek HJ. Nitrogen as a regulatory factor of methane oxidation in soils and sediments. FEMS
Microbiol Ecol 2004;47:265–77.
Boetius A, Ravenschlag K, Schubert CJ et al. A marine microbial consortium apparently mediating anaerobic
oxidation of methane. Lett to Nat 2000;407:623–6.
Bogard MJ, Giorgio PA, Boutet L et al. Oxic water column methanogenesis as a major component of aquatic
CH4 fluxes. Nat Commun 2014;5:1–9.
Bohncke SJP, Van Haaster H, Wiegers J. Paludella squarrosa (Hedw.) Brid. in a Late Subboreal Holland Peat
sequence. J Bryol 1984;13:219–26.
Boike J, Kattenstroth B, Abramova K et al. Baseline characteristics of climate, permafrost and land cover from a
new permafrost observatory in the Lena River Delta, Siberia (1998-2011). Biogeosciences 2013;10:2105–
28.
Boll M. 4-Hydroxybenzoyl-Coenzyme A Reductase. Encycl Inorg Bioinorg Chem 2011, DOI:
10.1002/9781119951438.eibc0681.
Bonan GB, Levis S. Quantifying carbon-nitrogen feedbacks in the Community Land Model (CLM4). Geophys
Res Lett 2010;37, DOI: 10.1029/2010GL042430.
Borges A V., Champenois W, Gypens N et al. Massive marine methane emissions from near-shore shallow
coastal areas. Sci Rep 2016;6, DOI: 10.1038/srep27908.
Borrel G, Adam PS, McKay LJ et al. Wide diversity of methane and short-chain alkane metabolisms in
uncultured archaea. Nat Microbiol 2019;4:603–13.
Borrel G, Colombet J, Robin A et al. Unexpected and novel putative viruses in the sediments of a deep-dark
permanently anoxic freshwater habitat. ISME J 2012;6:2119–27.
van den Bos RM. Human influence on carbon fluxes in coastal peatlands; process analysis, quantification and
prediction. 2003;1990:1–10.
Bosch JHA. Standaard Boor Beschrijvingsmethode., 2000.
Bottos EM, Kennedy DW, Romero EB et al. Dispersal limitation and thermodynamic constraints govern spatial
structure of permafrost microbial communities. FEMS Microbiol Ecol 2018;94:fiy110.
Bouchard F, Laurion I, Preskienis V et al. Modern to millennium-old greenhouse gases emitted from ponds and
lakes of the Eastern Canadian Arctic (Bylot Island, Nunavut). Biogeosciences 2015;12:7279–98. Bouchard F, MacDonald LA, Turner KW et al. Paleolimnology of thermokarst lakes: a window into permafrost
landscape evolution. Arct Sci 2017;3:91–117.
Boutard M, Cerisy T, Nogue PY et al. Functional diversity of carbohydrate-active enzymes enabling a bacterium
to ferment plant biomass. Plos Genet 2014;10:e1004773.
Bowden WB. Climate change in the Arctic - permafrost, thermokarst, and why they matter to the non-Arctic
world. Geogr Compass 2010;4:1553–66.
Bowers RM, Kyrpides NC, Stepanauskas R et al. Minimum information about a single amplified genome
(MISAG) and a metagenome-assembled genome (MIMAG) of bacteria and archaea. Nat Biotechnol
2017;35:725–31.
Bowler DE, Buyung-Ali L, Knight TM et al. Urban greening to cool towns and cities: A systematic review of
the empirical evidence. Landsc Urban Plan 2010;97:147–55.
Bowman JP. Approaches for the characterization and description of novel methanotrophic bacteria. Methods in
Enzymology. Vol 495. Academic Press Inc., 2011, 45–62. 274















































   274   275   276   277   278