Authors
Elisabeth Ramm, Chunyan Liu, Per Ambus, Klaus Butterbach-Bahl, Bin Hu, Pertti J Martikainen, Maija E Marushchak, Carsten W Mueller, Heinz Rennenberg, Michael Schloter, Henri MP Siljanen, Carolina Voigt, Christian Werner, Christina Biasi, Michael Dannenmann
Publication date
2022/1/11
Source
Environmental Research Letters
Volume
17
Issue
1
Pages
013004
Publisher
IOP Publishing
Description
The paradigm that permafrost-affected soils show restricted mineral nitrogen (N) cycling in favor of organic N compounds is based on the observation that net N mineralization rates in these cold climates are negligible. However, we find here that this perception is wrong. By synthesizing published data on N cycling in the plant-soil-microbe system of permafrost ecosystems we show that gross ammonification and nitrification rates in active layers were of similar magnitude and showed a similar dependence on soil organic carbon (C) and total N concentrations as observed in temperate and tropical systems. Moreover, high protein depolymerization rates and only marginal effects of C: N stoichiometry on gross N turnover provided little evidence for N limitation. Instead, the rather short period when soils are not frozen is the single main factor limiting N turnover. High gross rates of mineral N cycling are thus facilitated by …
Total citations
202220232024101910