International audienceNorthern boreal forests are characterized by accumulation of accumulation of peat (e.g., known as paludification). The functioning of northern boreal forest species and their capacity to adapt to environmental changes appear to depend on soil conditions. Climate warming is expected to have particularly pronounced effects on paludified boreal ecosystems and can alter current forest species composition and adaptation by changing soil conditions such as moisture, temperature regimes, and soil respiration. In this paper, we review and synthesize results from various reported studies (i.e., 88 research articles cited hereafter) to assess the effects of climatic warming on soil conditions of paludified forests in North Ameri...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Boreal forests play a critical role in global climate via important biophysical and biogeochemical f...
Complex non-linear relationships exist between air and soil temperature responses to climate change....
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
Background Successional paludification, a dynamic process that leads to the formation of peatlands,...
Pekka Vanhala, Kristiina Karhu, Mikko Tuomi, Katarina Bjorklof, Hannu Fritze, Hasse Hyvarinen, & Jar...
A strong argument can be made that there is a greater need to study the effect of warming on boreal ...
Boreal ecosystems store 10-20% of global soil carbon and may warm by 4-7°C over the next century. Hi...
Boreal ecosystems store 10-20% of global soil carbon and may warm by 4-7°C over the next century. Hi...
Background: Successional paludification, a dynamic process that leads to the formation of peatlands,...
Boreal forests play a critical role in global climate via important biophysical and biogeochemical f...
Background: Successional paludification, a dynamic process that leads to the formation of peatlands,...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Boreal forests play a critical role in global climate via important biophysical and biogeochemical f...
Complex non-linear relationships exist between air and soil temperature responses to climate change....
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
International audienceNorthern boreal forests are characterized by accumulation of accumulation of p...
Background Successional paludification, a dynamic process that leads to the formation of peatlands,...
Pekka Vanhala, Kristiina Karhu, Mikko Tuomi, Katarina Bjorklof, Hannu Fritze, Hasse Hyvarinen, & Jar...
A strong argument can be made that there is a greater need to study the effect of warming on boreal ...
Boreal ecosystems store 10-20% of global soil carbon and may warm by 4-7°C over the next century. Hi...
Boreal ecosystems store 10-20% of global soil carbon and may warm by 4-7°C over the next century. Hi...
Background: Successional paludification, a dynamic process that leads to the formation of peatlands,...
Boreal forests play a critical role in global climate via important biophysical and biogeochemical f...
Background: Successional paludification, a dynamic process that leads to the formation of peatlands,...
Peatlands store approximately 30% of global soil carbon, most in moss-dominated bogs. Future climati...
Boreal forests play a critical role in global climate via important biophysical and biogeochemical f...
Complex non-linear relationships exist between air and soil temperature responses to climate change....