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Abstract Unprecedented warming of Arctic–boreal regions (ABR) has poorly understood consequences on carbon cycle processes. Limited winter data add uncertainty to annual methane (CH 4 ) budgets. In this study, winter CH 4 flux measurements were conducted using the snowpack diffusion gradient method over five ABR ecosystem types in Canada and Finland: closed–crown and open–crown coniferous boreal forest, boreal wetland, erect–shrub and prostrate–shrub tundra. Boreal forest uplands acted as net CH 4 sinks with soil liquid water content identified as an important environmental control, while the boreal wetland acted as net CH 4 source during winter. We identified several wetland tundra CH 4 emission hotspots and large spatial variability in boreal wetland CH 4 emissions. Snow cover conditions and near‐surface soil temperature did not impact significantly CH 4 exchanges. Our results indicate non–negligible winter CH 4 flux, which must be accounted for in annual carbon balance and terrestrial biosphere models over ABR.
Mavrovic et al. (Sun,) studied this question.