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Frontiers in Microbiology|July 13, 2011
Toward understanding, managing, and protecting microbial ecosystemsPaul L E Bodelier
Applied and Environmental Microbiology|September 8, 2025
Expansion of aerobic methanotrophy to the phylum of Actinomycetota and its environmental implicationsPaul L E Bodelier
FEMS Microbiology Ecology|August 29, 2009
Nitrogen as a regulatory factor of methane oxidation in soils and sedimentsPaul L E Bodelier, Hendrikus J Laanbroek
Environmental Microbiology|May 3, 2007
Methane-derived carbon flows through methane-oxidizing bacteria to higher trophic levels in aquatic systemsPeter Deines, Paul L E Bodelier, Gundula Eller
FEMS Microbiology Ecology|August 30, 2007
Effect of temperature on composition of the methanotrophic community in rice field and forest soilSantosh R Mohanty, Paul L E Bodelier, Ralf Conrad
Journal of Microbiological Methods|May 8, 2007
Improved PCR-DGGE for high resolution diversity screening of complex sulfate-reducing prokaryotic communities in soils and sedimentsMarzia Miletto, Paul L E Bodelier, Hendrikus J Laanbroek
FEMS Microbiology Ecology|December 8, 2010
Strain-specific incorporation of methanotrophic biomass into eukaryotic grazers in a rice field soil revealed by PLFA-SIPJun Murase, Kees Hordijk, Ichiro Tayasu, et al.
FEMS Microbiology Ecology|January 25, 2017
Revisiting life strategy concepts in environmental microbial ecologyAdrian Ho, D Paolo Di Lonardo, Paul L E Bodelier
Ecology|June 14, 2011
Aquatic herbivores facilitate the emission of methane from wetlandsBas J J Dingemans, Elisabeth S Bakker, Paul L E Bodelier
Antonie Van Leeuwenhoek|October 12, 2011
Characterization of Methylobacterium strains isolated from the phyllosphere and description of Methylobacterium longum sp. novClaudia Knief, Vanina Dengler, Paul L E Bodelier, et al.
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