Foraging deeply: Depth-specific plant nitrogen uptake in response to climate-induced N-release and permafrost thaw in the High Arctic

被引:51
作者
Pedersen, Emily P. [1 ,2 ]
Elberling, Bo [2 ]
Michelsen, Anders [1 ,2 ]
机构
[1] Univ Copenhagen, Dept Biol, Terr Ecol, Univ Pk 15, DK-2100 Copenhagen, Denmark
[2] Univ Copenhagen, Dept Geosci & Nat Resource Management, Ctr Permafrost CENPERM, Copenhagen, Denmark
基金
新加坡国家研究基金会;
关键词
N-15; active layer; arctic tundra; autumn plant N uptake; climate change; nitrogen cycling; permafrost thaw; plant community change; plant-microbe competition; stable isotope labelling; SOIL-NITROGEN; INORGANIC NITROGEN; FUNCTIONAL-GROUPS; TUNDRA; AVAILABILITY; HEATH; MICROBES; GROWTH; MINERALIZATION; INCREASES;
D O I
10.1111/gcb.15306
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Warming in the Arctic accelerates top-soil decomposition and deep-soil permafrost thaw. This may lead to an increase in plant-available nutrients throughout the active layer soil and near the permafrost thaw front. For nitrogen (N) limited high arctic plants, increased N availability may enhance growth and alter community composition, importantly affecting the ecosystem carbon balance. However, the extent to which plants can take advantage of this newly available N may be constrained by the following three factors: vertical distribution of N within the soil profile, timing of N-release, and competition with other plants and microorganisms. Therefore, we investigated species- and depth-specific plant N uptake in a high arctic tundra, northeastern Greenland. Using stable isotopic labelling (N-15-NH4+), we simulated autumn N-release at three depths within the active layer: top (10 cm), mid (45 cm) and deep-soil near the permafrost thaw front (90 cm). We measured plant species-specific N uptake immediately after N-release (autumn) and after 1 year, and assessed depth-specific microbial N uptake and resource partitioning between above- and below-ground plant parts, microorganisms and soil. We found that high arctic plants actively foraged for N past the peak growing season, notably the graminoidKobresia myosuroides. While most plant species (Carex rupestris,Dryas octopetala,K. myosuroides) preferred top-soil N, the shrubSalix arcticaalso effectively acquired N from deeper soil layers. All plants were able to obtain N from the permafrost thaw front, both in autumn and during the following growing season, demonstrating the importance of permafrost-released N as a new N source for arctic plants. Finally, microbial N uptake markedly declined with depth, hence, plant access to deep-soil N pools is a competitive strength. In conclusion, plant species-specific competitive advantages with respect to both time- and depth-specific N-release may dictate short- and long-term plant community changes in the Arctic and consequently, larger-scale climate feedbacks.
引用
收藏
页码:6523 / 6536
页数:14
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