Item does not contain fulltext1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is established that peatland methane dynamics are controlled by both biotic and abiotic conditions, yet the interactive effect of these drivers is less studied and consequently poorly understood. 2. Climate change affects the distribution of vascular plant functional types (PFTs) in peatlands. By removing specific PFTs, we assessed their effects on peat organic matter chemistry, microbial community composition and on potential methane production (PMP) and oxidation (PMO) in two microhabitats (lawns and hummocks). 3. Whilst PFT removal only marginally altered the peat organic matter chemistry, we observed considerable ...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
This is a post-peer-review, pre-copyedit version of an article published in [insert journal title]. ...
1. Northern peatlands consist of a mosaic of peatland types that vary spatially and temporally and d...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Northern peatlands consist of a mosaic of peatland types that vary spatially and temporally and diff...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
1. Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is es...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
Peatlands are natural sources of atmospheric methane (CH4), an important greenhouse gas. It is estab...
This is a post-peer-review, pre-copyedit version of an article published in [insert journal title]. ...
1. Northern peatlands consist of a mosaic of peatland types that vary spatially and temporally and d...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Northern peatlands consist of a mosaic of peatland types that vary spatially and temporally and diff...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...
Climate warming is predicted to increase heterotrophic metabolism in northern peatland soils leading...