Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methanotrophs) living in association with Sphagnum spp. Field studies and laboratory experiments have revealed that, with increasing water level and temperature, methanotrophic activity increases. To gain a better understanding of how longer term changes in methanotrophic activity are reflected in methanotroph biomarkers, a peat record (0–100 cm) from the Hautes-Fagnes (Belgium) encompassing the past 1500 years, was analysed for methanotroph-specific intact bacteriohopanepolyols (BHPs) and the carbon isotopic composition of diploptene. A predominance of aminobacteriohopanetetrol (aminotetrol) over aminobacteriohopanepentol (aminopentol) indicated th...
International audienceLow affinity methanotrophic bacteria consume a significant quantity of methane...
Journal ArticlePublished by Copernicus Publications on behalf of the European Geosciences UnionAutho...
Sphagnum peatlands are important ecosystems in the methane cycle. Methanotrophs living inside the de...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat ...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Global warming is continuing without delay and this is caused by the accumulation of greenhouse gase...
International audienceLow affinity methanotrophic bacteria consume a significant quantity of methane...
Journal ArticlePublished by Copernicus Publications on behalf of the European Geosciences UnionAutho...
Sphagnum peatlands are important ecosystems in the methane cycle. Methanotrophs living inside the de...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
Methane emissions from peat bogs are strongly reduced by aerobic methane oxidising bacteria (methano...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
International audienceMethane emissions from peat bogs are strongly reduced by aerobic methane oxidi...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat ...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Methane emissions from peat bogs are mitigated by methanotrophs, which live in symbiosis with peat m...
Global warming is continuing without delay and this is caused by the accumulation of greenhouse gase...
International audienceLow affinity methanotrophic bacteria consume a significant quantity of methane...
Journal ArticlePublished by Copernicus Publications on behalf of the European Geosciences UnionAutho...
Sphagnum peatlands are important ecosystems in the methane cycle. Methanotrophs living inside the de...