Carbon assimilation and allocation (13C labeling) in a boreal perennial grass (Phalaris arundinacea) subjected to elevated temperature and CO2 through a growing season
Zhen‐Ming Ge(Jiangsu University), Pertti J. Martikainen(University of Eastern Finland), Heli Peltola(University of Eastern Finland), Christina Biasi(University of Eastern Finland), Kaiyun Wang(Shandong Agricultural University), Xiao Zhou(State Forestry and Grassland Administration), Seppo Kellomäki(University of Eastern Finland)
Cited by 30
Related Papers
Potential carbon emissions dominated by carbon dioxide from thawed permafrost soils
|Nature Climate Change|2016|421
Warming of subarctic tundra increases emissions of all three important greenhouse gases – carbon dioxide, methane, and nitrous oxide
|Global Change Biology|2016|308
Statistical upscaling of ecosystem CO<sub>2</sub> fluxes across the terrestrial tundra and boreal domain: Regional patterns and uncertainties
|Global Change Biology|2021|227
Large N2O emissions from cryoturbated peat soil in tundra
|Nature Geoscience|2009|226
The uncertain climate footprint of wetlands under human pressure
|Proceedings of the National Academy of Sciences|2015|222