Articles | Volume 8, issue 5
https://doi.org/10.5194/bg-8-1267-2011
https://doi.org/10.5194/bg-8-1267-2011
Research article
 | 
24 May 2011
Research article |  | 24 May 2011

The role of endophytic methane-oxidizing bacteria in submerged Sphagnum in determining methane emissions of Northeastern Siberian tundra

F. J. W. Parmentier, J. van Huissteden, N. Kip, H. J. M. Op den Camp, M. S. M. Jetten, T. C. Maximov, and A. J. Dolman

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Cited articles

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Beven, K.: Environmental Modelling: An Uncertain Future?, Routledge: London, p. 328, 2008.
Bodrossy, L., Stralis-Pavese, N., Murrell, J., Radajewski, S., Weilharter, A., and Sessitsch, A.: Development and validation of a diagnostic microbial microarray for methanotrophs, Environm. Microbiol., 5, 566–582, 2003.
Bubier, J. L.: The relationship of vegetation to methane emission and hydrochemical gradients in northern peatlands, J. Ecol., 83, 403–420, 1995.
Christensen, T. R., Panikov, N. S., Mastepanov, M., Joabsson, A., Stewart, A., Oquist, M., Sommerkorn, M., Reynaud, S., and Svensson, B.: Biotic controls on CO2 and CH4 exchange in wetlands – a closed environment study, Biogeochemistry, 64, 337–354, 2003.
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