Climate change affects the Arctic and Subarctic regions by exposing previously frozen permafrost to thaw, unlocking nutrients, changing hydrological processes, and boosting plant growth. As a result, Arctic tundra is subject to a shrub expansion, called “shrubification” at the expense of sedge species. Depending on intrinsic foliar properties of these plant species, changes in foliar fluxes with shrubification in the context of permafrost degradation may influence topsoil mineral element composition. Despite the potential implications for the fate of organic carbon in the topsoil, this remains poorly quantified. Here, we investigate vegetation foliar and topsoil mineral element composition (mineral elements that influence organic carbon dec...
Arctic tundra ecosystems are warming almost twice as fast as the global average1. Permafrost thaw an...
Arctic tundra ecosystems are warming almost twice as fast as the global average. Permafrost thaw and...
Tundra vegetation productivity and composition are responding rapidly to climatic changes in the Arc...
Climate change affects the Arctic and Subarctic regions by exposing previously frozen permafrost to ...
Climate change affects the Arctic and sub-Arctic regions by exposing previously frozen permafrost to...
Arctic warming and permafrost degradation are modifying northern ecosystems through changes in micro...
Climate warming strongly affects the Arctic region by creating soil subsidence, increasing thaw dept...
Arctic warming and permafrost loss modify northern ecosystems through soil subsidence, changes in so...
Global warming affects the Arctic and sub-Arctic regions by exposing previously frozen permafrost to...
Mineral element cycling through the soil-plant system upon permafrost thaw: case study in Interior A...
Current climate warming strongly affects the Arctic region by increasing thaw depths and modifying w...
Upon permafrost thaw, the volume of soil accessible to plant roots increases which modifies the acqu...
Permafrost thaw modifies resource acquisition for tundra vegetation in two major directions of veget...
Permafrost stores large quantities of organic carbon throughout the Arctic tundra. With the warming ...
Abrupt thaw events in ice-rich permafrost regions lead to local landscape degradations (subsidence) ...
Arctic tundra ecosystems are warming almost twice as fast as the global average1. Permafrost thaw an...
Arctic tundra ecosystems are warming almost twice as fast as the global average. Permafrost thaw and...
Tundra vegetation productivity and composition are responding rapidly to climatic changes in the Arc...
Climate change affects the Arctic and Subarctic regions by exposing previously frozen permafrost to ...
Climate change affects the Arctic and sub-Arctic regions by exposing previously frozen permafrost to...
Arctic warming and permafrost degradation are modifying northern ecosystems through changes in micro...
Climate warming strongly affects the Arctic region by creating soil subsidence, increasing thaw dept...
Arctic warming and permafrost loss modify northern ecosystems through soil subsidence, changes in so...
Global warming affects the Arctic and sub-Arctic regions by exposing previously frozen permafrost to...
Mineral element cycling through the soil-plant system upon permafrost thaw: case study in Interior A...
Current climate warming strongly affects the Arctic region by increasing thaw depths and modifying w...
Upon permafrost thaw, the volume of soil accessible to plant roots increases which modifies the acqu...
Permafrost thaw modifies resource acquisition for tundra vegetation in two major directions of veget...
Permafrost stores large quantities of organic carbon throughout the Arctic tundra. With the warming ...
Abrupt thaw events in ice-rich permafrost regions lead to local landscape degradations (subsidence) ...
Arctic tundra ecosystems are warming almost twice as fast as the global average1. Permafrost thaw an...
Arctic tundra ecosystems are warming almost twice as fast as the global average. Permafrost thaw and...
Tundra vegetation productivity and composition are responding rapidly to climatic changes in the Arc...