Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumulation and release of soil organic matter. However, poor understanding of the mechanisms responsible hinders the development of effective land management strategies to enhance soil carbon storage. Here we empirically test the link between microbial ecophysiological traits and topsoil carbon content across geographically distributed soils and land use contrasts. We discovered distinct pH controls on microbial mechanisms of carbon accumulation. Land use intensification in low-pH soils that increased the pH above a threshold (~6.2) leads to carbon loss through increased decomposition, following alleviation of acid retardation of microbial growth. ...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
A.A.M. has received funding from the European Union’s Horizon 2020 research and innovation program u...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
The microbial partitioning of organic carbon (C) into either anabolic (i.e. growth) or catabolic (i....
The microbial partitioning of organic carbon (C) into either anabolic (i.e. growth) or catabolic (i....
Soil carbon (C) storage is dependent upon the complex dynamics of fresh and native organic matter cy...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil–atmosphere carbon exchange by balancing the accumula...
A.A.M. has received funding from the European Union’s Horizon 2020 research and innovation program u...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
Soil microorganisms act as gatekeepers for soil-atmosphere carbon exchange by balancing the accumula...
The microbial partitioning of organic carbon (C) into either anabolic (i.e. growth) or catabolic (i....
The microbial partitioning of organic carbon (C) into either anabolic (i.e. growth) or catabolic (i....
Soil carbon (C) storage is dependent upon the complex dynamics of fresh and native organic matter cy...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...