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- W2109924900 abstract "• Simulation models indicate that the nitrogen (N) cycle plays a key role in how other ecosystem processes such as plant productivity and carbon (C) sequestration respond to elevated CO2 and warming. However, combined effects of elevated CO2 and warming on N cycling have rarely been tested in the field. • Here, we studied N cycling under ambient and elevated CO2 concentrations (600 μmol mol−1), and ambient and elevated temperature (1.5 : 3.0°C warmer day:night) in a full factorial semiarid grassland field experiment in Wyoming, USA. We measured soil inorganic N, plant and microbial N pool sizes and NO3− uptake (using a 15N tracer). • Soil inorganic N significantly decreased under elevated CO2, probably because of increased microbial N immobilization, while soil inorganic N and plant N pool sizes significantly increased with warming, probably because of increased N supply. We observed no CO2 × warming interaction effects on soil inorganic N, N pool sizes or NO3− uptake in plants and microbes. • Our results indicate a more closed N cycle under elevated CO2 and a more open N cycle with warming, which could affect long-term N retention, plant productivity, and C sequestration in this semiarid grassland." @default.
- W2109924900 created "2016-06-24" @default.
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- W2109924900 date "2010-05-10" @default.
- W2109924900 modified "2023-10-07" @default.
- W2109924900 title "Contrasting effects of elevated CO<sub>2</sub> and warming on nitrogen cycling in a semiarid grassland" @default.
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- W2109924900 doi "https://doi.org/10.1111/j.1469-8137.2010.03293.x" @default.
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