Page 275 - Microbial methane cycling in a warming world From biosphere to atmosphere Michiel H in t Zandt
P. 275
Anthony KW, von Deimling TS, Nitze I et al. 21st-century modeled permafrost carbon emissions accelerated by abrupt thaw beneath lakes. Nat Commun 2018;9:3262.
Arfi Y, Marchand C, Wartel M et al. Fungal diversity in anoxic-sulfidic sediments in a mangrove soil. Fungal Ecol 2011;5:282–5.
Aromokeye DA, Kulkarni AC, Elvert M et al. Rates and microbial players of iron-driven anaerobic oxidation of methane in methanic marine sediments. Front Microbiol 2020;10:1–19.
Arp CD, Jones BM, Lu Z et al. Shifting balance of thermokarst lake ice regimes across the Arctic Coastal Plain of northern Alaska. Geophys Res Lett 2012;39:1–5.
Arp CD, Jones BM, Urban FE et al. Hydrogeomorphic processes of thermokarst lakes with grounded-ice and floating-ice regimes on the Arctic coastal plain, Alaska. Hydrol Process 2011;25:2422–38.
Arshad A, Speth DR, de Graaf RM et al. A metagenomics-based metabolic model of nitrate-dependent anaerobic oxidation of methane by Methanoperedens-like archaea. Front Microbiol 2015;6:1–14.
Auguet J-C, Casamayor EO. Partitioning of Thaumarchaeota populations along environmental gradients in high mountain lakes. FEMS Microbiol Ecol 2013;84:154–64.
Ball A, Ahmad S, McCluskey C et al. Austrialian Energy Update 2016., 2016.
Bar-Or I, Elvert M, Eckert W et al. Iron-coupled anaerobic oxidation of methane performed by a mixed bacterial-archaeal community based on poorly reactive minerals. Environ Sci Technol 2017, DOI:
10.1021/acs.est.7b03126.
Barber KE, Chambers FM, Maddy D et al. A sensitive high-resolution record of late Holocene climatic change
from a raised bog in northern England. The Holocene 1994;4:198–205.
Barber KE, Chambers FM, Maddy D. Holocene palaeoclimates from peat stratigraphy: macrofossil proxy
climate records from three oceanic raised bogs in England and Ireland. Quat Sci Rev 2003;22:521–39. Barbier BA, Dziduch I, Liebner S et al. Methane-cycling communities in a permafrost-affected soil on Herschel
Island, Western Canadian Arctic: active layer profiling of mcrA and pmoA genes. FEMS Microbiol Ecol
2012;82:287–302.
Barnhart KR, Barnhart KR, Anderson RS et al. Modeling erosion of ice-rich permafrost bluffs along the Alaskan
Beaufort Sea coast. J Geophys Res 2014;119:1155–79.
Barragán MJL, Carmona M, María T et al. The bzd gene cluster coding for anaerobic benzoate catabolism in
Azoarcus sp. strain CIB. J Bacteriol 2004;186:5762–74.
Barrett A. Can we really achieve net-zero emissions by 2050? BBC Sci Focus Mag 2020.
Barrett S, Dannenberg A. Sensitivity of collective action to uncertainty about climate tipping points. Nat Clim
Chang 2014;4:36–9.
Bartram AK, Lynch MDJ, Stearns JC et al. Generation of multimillion-sequence 16S rRNA gene libraries from
complex microbial communities by assembling paired-end Illumina reads. Appl Environ Microbiol
2011;77:3846–52.
Basiliko N, Yavitt JB, Dees PM et al. Methane biogeochemistry and methanogen communities in two Northern
peatland ecosystems, New York State. Geomicrobiol J 2003;20:563–77.
Bastviken D, Cole J, Pace M et al. Methane emissions from lakes: Dependence of lake characteristics, two
regional assessments, and a global estimate. Global Biogeochem Cycles 2004;18:1–12.
Bastviken D, Tranvik LJ, Downing JA et al. Freshwater methane emissions offset the continental carbon sink.
Science 2011;331:50.
Beal EJ, House CH, Orphan VJ. Manganese- and iron-dependent marine methane oxidation. Science
2009;325:184–7.
Beck DAC, Kalyuzhnaya MG, Malfatti S et al. A metagenomic insight into freshwater methane-utilizing
communities and evidence for cooperation between the Methylococcaceae and the Methylophilaceae.
R
PeerJ 2013;1:e23.
Beech IB, Gaylarde CC. Microbial polysaccharides and corrosion. Int Biodeterior 1991;27:95–107.
Beech IB, Sztyler M, Gaylarde CC et al. Biofilms and biocorrosion. In: Liengen T, Féron D, Basségny R, et al.
(eds.). Understanding Biocorrosion. 1st ed. Sawston, UK: Woodhead Publishing, 2014, 33–56. Benstead J, King GM. The effect of soil acidification on atmospheric methane uptake by a Maine forest soil.
FEMS Microbiol Ecol 2001;34:207–12.
Berger S, Frank J, Dalcin Martins P et al. High-quality draft genome sequence of “Candidatus Methanoperedens
sp.” strain BLZ2, a nitrate-reducing anaerobic methane-oxidizing archaeon enriched in an anoxic bioreactor. Genome Announc 2017;5:1–2.
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