Articles | Volume 9, issue 10
https://doi.org/10.5194/bg-9-3891-2012
https://doi.org/10.5194/bg-9-3891-2012
Research article
 | 
10 Oct 2012
Research article |  | 10 Oct 2012

Anaerobic oxidation of methane in grassland soils used for cattle husbandry

A. Bannert, C. Bogen, J. Esperschütz, A. Koubová, F. Buegger, D. Fischer, V. Radl, R. Fuß, A. Chroňáková, D. Elhottová, M. Šimek, and M. Schloter

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Cited articles

Boetius, A., Ravenschlag, K., Schubert, C. J., Rickert, D., Widdel, F., Gieseke, A., Amann, R., Jorgensen, B. B., Witte, U., and Pfannkuche, O.: A marine microbial consortium apparently mediating anaerobic oxidation of methane, Nature, 407, 623–626, 2000.
Boschker, H. T. S., Nold, S. C., Wellsbury, P., Bos, D., de Graaf, W., Pel, R., Parkes, R. J., and Cappenberg, T. E.: Direct linking of microbial populations to specific biogeochemical processes by 13C-labelling of biomarkers, Nature, 392, 801–805, 1998.
Bowman, J. P., Skerratt, J. H., Nichols, P. D., and Sly, L. I.: Phospholipid fatty acid and lipopolysaccharide fatty acid signature lipids in methane-utilizing bacteria, FEMS Microbiol. Lett., 85, 15–21, 1991.
Chroňáková, A., Radl, V., Cuhel, J., Simek, M., Elhottová, D., Engel, M., and Schloter, M.: Overwintering management on upland pasture causes shifts in an abundance of denitrifying microbial communities, their activity and N2O-reducing ability, Soil Biol. Biochem., 41, 1132–1138, 2009.
Daniel, R., Warnecke, F., Potekhina, J. S., and Gottschalk, G.: Identification of the syntrophic partners in a coculture coupling anaerobic methanol oxidation to Fe(III) reduction, FEMS Microbiol. Lett., 180, 197–203, 1999.
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