Spatial-temporal patterns of foliar and bulk soil 15N isotopic signatures across a heterogeneous landscape: Linkages to soil N status, nitrate leaching, and N2O fluxes

被引:1
|
作者
Wangari, Elizabeth Gachibu [1 ]
Mwanake, Ricky Mwangada [1 ]
Houska, Tobias [2 ]
Kraus, David [1 ]
Kikowatz, Hanna-Marie [1 ]
Wolf, Benjamin [1 ]
Gettel, Gretchen M. [3 ,4 ]
Breuer, Lutz [2 ,7 ]
Ambus, Per [5 ,6 ]
Kiese, Ralf [1 ]
Butterbach-Bahl, Klaus [1 ,6 ]
机构
[1] Karlsruhe Inst Technol, Inst Meteorol & Climate Res Atmospher Environm Res, Kreuzeckbahnstr 19, D-82467 Garmisch Partenkirchen, Germany
[2] Justus Liebig Univ Giessen, Inst Landscape Ecol & Resources Management ILR, Res Ctr Biosyst Land Use & Nutr iFZ, D-35392 Giessen, Germany
[3] IHE Delft Inst Water Educ, Westvest 7, NL-2611 AX Delft, Netherlands
[4] Univ Aarhus, Dept Ecosci Freshwater Ecol, Aarhus, Denmark
[5] Univ Copenhagen, Dept Geosci & Nat Resource Management, DK-1350 Copenhagen, Denmark
[6] Univ Aarhus, Pioneer Ctr Land CRAFT, Dept Agroecol, Aarhus, Denmark
[7] Justus Liebig Univ Giessen, Ctr Int Dev & Environm Res ZEU, Senckenbergstr 3, D-35390 Giessen, Germany
关键词
delta N-15 natural abundance; Resins; Cropland; Grassland; Forest; Soil profile patterns; Stable nitrogen isotopes; NATURAL-ABUNDANCE; ORGANIC-MATTER; NITROGEN-CYCLE; DELTA-N-15; GRADIENT; PLANTS; VEGETATION; DELTA-C-13; GRASSLAND; ECOSYSTEM;
D O I
10.1016/j.soilbio.2024.109609
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The natural abundance of plant and bulk soil N-15 isotopic signatures provides valuable insights into the magnitude of nitrogen cycling and loss processes within terrestrial ecosystems. However, N-15 isotopic signatures are highly variable in space due to natural and anthropogenic factors affecting N cycling processes and losses. To date, most studies on foliar and bulk soil N-15 isotopic signatures have focused on N-limited forest ecosystems at relatively large spatial scales, while similar studies in N-enriched ecosystems at finer spatial scales are lacking. To address this gap and evaluate links between soil N-15 isotopic signatures and ecosystem N cycling and loss processes (plant N uptake, N leaching, and gaseous loss), this study quantified foliar and bulk soil N-15 isotopic signatures, soil physicochemical parameters, gaseous (N2O), and hydrological (NO3) N losses at 80 sites distributed across a heterogeneous landscape (similar to 5.8 km(2)). To account for the spatial-temporal heterogeneity, the measurements were performed in four campaigns (March, June, September 2022, and March 2023) at sites that considered different land uses, soil types, and topography. Results indicated that foliar and bulk soil N-15 isotopic signatures were significantly (P < 0.05) more enriched in arable and grassland ecosystems than forests, suggesting a more open N cycle with significant N cycling and losses due to higher N inputs from fertilizers. Similar to soil inorganic N, N2O fluxes, and NO3 leaching rates, landscape-scale foliar and soil N-15 isotopic signatures varied widely spatially, particularly at grassland and arable land (-3 to 9.0 parts per thousand), with bivariate and multivariate analyses also showing significant relationships between landscape-scale soil N-15 isotopic signatures and the aforementioned parameters (r(2): 0.29 to 0.82). Based on these relationships, our findings suggested that foliar and bulk N-15 isotopic signatures may capture fine-scale areas with persistently high and low environmental N losses (N2O fluxes and NO3 leaching) within a heterogeneous landscape.
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页数:13
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