The effect of grazing on the abundance, composition, and methane (CH4) uptake of methanotrophs in grasslands has been well documented in the past few decades, but the dominant communities of active methanotrophs responsible for CH4 oxidation activity in grazed soils are still poorly understood. In this study, we characterized the metabolically active, aerobic methanotrophs in grasslands with three different levels of grazing (light, medium, and heavy) by combining DNA-stable isotope probing (SIP) and quantitative PCR (qPCR) for methane monooxygenase (pmoA) gene– and 16S rRNA gene–based amplicon sequencing. The CH4 oxidation potential was as low as 0.51 μmol g dry weight−1 day−1 in the ungrazed control, while it decreased as grazing intensit...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Grasslands have an important global role in biological methane (CH4) oxidation and therefore it is c...
The effect of grazing on the abundance, composition, and methane (CH4) uptake of methanotrophs in gr...
The effect of grazing on the abundance, composition, and methane (CH₄) uptake of methanotrophs in gr...
Methane (CH 4) is an important trace greenhouse gas and atmospheric CH 4...
Methane (CH₄) is an important trace greenhouse gas and atmospheric CH₄ uptake by high-affinity metha...
Grazing exclusion (GE) is an effective measure for restoring degraded grassland ecosystems. However,...
This work was financially supported by Natural Science Foundation of China (41977033, 41907026, and ...
Aerobic methanotrophs in upland soils cons...
Abstract Knowledge about methanotrophs and their activ-ities is important to understand the microbia...
Aerobic methanotrophs in upland soils consume atmospheric methane, serving as a critical counterbala...
Aerobic methanotrophs in upland soils consume atmospheric methane, serving as a critical counterbala...
We investigated the effect of afforestation and reforestation of pastures on methane oxidation and t...
We investigated the effect of afforestation and reforestation of pastures on methane oxidation and t...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Grasslands have an important global role in biological methane (CH4) oxidation and therefore it is c...
The effect of grazing on the abundance, composition, and methane (CH4) uptake of methanotrophs in gr...
The effect of grazing on the abundance, composition, and methane (CH₄) uptake of methanotrophs in gr...
Methane (CH 4) is an important trace greenhouse gas and atmospheric CH 4...
Methane (CH₄) is an important trace greenhouse gas and atmospheric CH₄ uptake by high-affinity metha...
Grazing exclusion (GE) is an effective measure for restoring degraded grassland ecosystems. However,...
This work was financially supported by Natural Science Foundation of China (41977033, 41907026, and ...
Aerobic methanotrophs in upland soils cons...
Abstract Knowledge about methanotrophs and their activ-ities is important to understand the microbia...
Aerobic methanotrophs in upland soils consume atmospheric methane, serving as a critical counterbala...
Aerobic methanotrophs in upland soils consume atmospheric methane, serving as a critical counterbala...
We investigated the effect of afforestation and reforestation of pastures on methane oxidation and t...
We investigated the effect of afforestation and reforestation of pastures on methane oxidation and t...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Afforestation of pastures in New Zealand reduces methane (CH4) production from soil, while also stim...
Grasslands have an important global role in biological methane (CH4) oxidation and therefore it is c...