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Metabolic Engineering|June 2, 2020
Hydrogen utilization by Methylocystis sp. strain SC2 expands the known metabolic versatility of type IIa methanotrophsAnna Hakobyan, Jing Zhu, Timo Glatter, et al.
Applied and Environmental Microbiology|April 17, 2012
Complete sequence analysis of two methanotroph-specific repABC-containing plasmids from Methylocystis sp. strain SC2Bomba Dam, Michael Kube, Somasri Dam, et al.
Environmental Microbiology|February 3, 2005
Succession of bacterial community structure and diversity in a paddy soil oxygen gradientMatthias Noll, Diethart Matthies, Peter Frenzel, et al.
International Journal of Systematic and Evolutionary Microbiology|October 4, 2007
Mucilaginibacter paludis gen. nov., sp. nov. and Mucilaginibacter gracilis sp. nov., pectin-, xylan- and laminarin-degrading members of the family Sphingobacteriaceae from acidic Sphagnum peat bogTimofei A Pankratov, Brian J Tindall, Werner Liesack, et al.
International Journal of Systematic and Evolutionary Microbiology|December 13, 2006
Isolation of aerobic, gliding, xylanolytic and laminarinolytic bacteria from acidic Sphagnum peatlands and emended description of Chitinophaga arvensicola Kampfer et al. 2006Timofei A Pankratov, Irina S Kulichevskaya, Werner Liesack, et al.
The ISME Journal|December 23, 2011
Linking activity, composition and seasonal dynamics of atmospheric methane oxidizers in a meadow soilPravin Malla Shrestha, Claudia Kammann, Katharina Lenhart, et al.
Environmental Microbiology|May 14, 2011
Bacterial populations and environmental factors controlling cellulose degradation in an acidic Sphagnum peatTimofey A Pankratov, Anastasia O Ivanova, Svetlana N Dedysh, et al.
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