Methane (CH4) dynamics across permafrost regions is critical in determining the magnitude and direction of permafrost carbon (C)-climate feedback. However, current studies are mainly derived from the Arctic area, with limited evidence from other permafrost regions. By combining large-scale laboratory incubation across 51 sampling sites with machine learning techniques and bootstrap analysis, here, we determined regional patterns and dominant drivers of CH4 oxidation potential in alpine steppe and meadow (CH4 sink areas) and CH4 production potential in swamp meadow (CH4 source areas) across the Tibetan alpine permafrost region. Our results showed that both CH4 oxidation potential (in alpine steppe and meadow) and CH4 production potential (in...
Arctic wetlands are currently net sources of atmospheric CH4 . Due to their complex biogeochemical c...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...
The methane (CH4) cycle on the Qinghai–Tibet Plateau (QTP), the world's largest high-elevation per...
Methanotrophic bacteria may consume 60 to 90% of methane (CH4) produced in thawing permafrost peatla...
Projected 21st century changes in high-latitude climate are expected to have significant impacts on ...
Soil moisture plays a vital role in regulating the direction and magnitude of methane (CH4) fluxes. ...
Rapid warming of Arctic ecosystems accelerates microbial decomposition of soil organic matter and l...
The global methane (CH4) cycle is largely driven by methanogenic archaea and methane-oxidizing bacte...
Abstract Permafrost thaw liberates frozen organic carbon, which is decomposed into carbon dioxide (C...
The mid-high latitude permafrost peatlands in the Northern Hemisphere is a major natural source of m...
The organic carbon of permafrost affected soils is receiving particular attention with respect to it...
Abstract Knowledge about methanotrophs and their activ-ities is important to understand the microbia...
The Arctic plays a key role in the Earths climate system, because global warming is predicted to be ...
Permafrost contains about 50% of the global soil carbon1. It is thought that the thawing of permafro...
Arctic wetlands are currently net sources of atmospheric CH4 . Due to their complex biogeochemical c...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...
The methane (CH4) cycle on the Qinghai–Tibet Plateau (QTP), the world's largest high-elevation per...
Methanotrophic bacteria may consume 60 to 90% of methane (CH4) produced in thawing permafrost peatla...
Projected 21st century changes in high-latitude climate are expected to have significant impacts on ...
Soil moisture plays a vital role in regulating the direction and magnitude of methane (CH4) fluxes. ...
Rapid warming of Arctic ecosystems accelerates microbial decomposition of soil organic matter and l...
The global methane (CH4) cycle is largely driven by methanogenic archaea and methane-oxidizing bacte...
Abstract Permafrost thaw liberates frozen organic carbon, which is decomposed into carbon dioxide (C...
The mid-high latitude permafrost peatlands in the Northern Hemisphere is a major natural source of m...
The organic carbon of permafrost affected soils is receiving particular attention with respect to it...
Abstract Knowledge about methanotrophs and their activ-ities is important to understand the microbia...
The Arctic plays a key role in the Earths climate system, because global warming is predicted to be ...
Permafrost contains about 50% of the global soil carbon1. It is thought that the thawing of permafro...
Arctic wetlands are currently net sources of atmospheric CH4 . Due to their complex biogeochemical c...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...
International audienceIn Arctic regions, thawing permafrost soils are projected to release 50 to 250...