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Responses of soil nitrogen dynamics in a Mojave Desert ecosystem to manipulations in soil carbon and nitrogen availability

机译:莫哈韦沙漠生态系统中土壤氮动态对土壤碳和氮有效性控制的响应

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摘要

We investigated the effects of changes in soil C and N availability on N mineralization, nitrification, denitrification, NH3 volatilization, and soil respiration in the Mojave Desert. Results indicate a C limitation to microbial N cycling. Soils from underneath the canopies of Larrea tridentata (DC.) Cov., Pleuraphis rigida Thurber, and Lycium spp. exhibited higher rates of CO2 flux, lower rates of NH3 volatilization, and a decrease in inorganic N (NH4+-N and NO3--N) with C addition. In addition to C limitation, soils from plant interspaces also exhibited a N limitation. Soils from all locations had net immobilization of N over the course of a 15-day laboratory incubation. However, soils from interspaces had lower rates of net nitrification and potential denitrification compared to soils from under plant canopies. The response to changes in C availability appears to be a short-term increase in microbial immobilization of inorganic N. Under controlled conditions, and over a longer time period, the effects of C and N availability appear to give way to larger differences due to spatial location. These findings have implications for ecosystems undergoing changes in soil C and N availability due to such processes as desertification, exotic species invasions, or elevated atmospheric CO2 concentration.
机译:我们调查了土壤C和N有效性的变化对莫哈韦沙漠中N矿化,硝化,反硝化,NH3挥发和土壤呼吸的影响。结果表明对微生物氮循环的碳限制。来自Larrea tridentata(DC。)Cov。,Pleuraphis harda Thurber和Lycium spp冠层下的土壤。碳的添加会导致较高的CO2通量速率,较低的NH3挥发速率以及无机N(NH4 + -N和NO3--N)的减少。除碳限制外,植物间隙的土壤也表现出氮限制。在15天的实验室温育过程中,所有位置的土壤都净固定了N。然而,与来自植物冠层下的土壤相比,来自间隙的土壤具有较低的净硝化率和潜在的反硝化率。对C利用率变化的响应似乎是无机N固定化的短期增加。在受控条件下,在较长的时间段内,C和N利用率的影响似乎因空间的不同而更大。位置。这些发现对由于诸如荒漠化,外来物种入侵或大气CO2浓度升高等过程而使土壤碳和氮的有效性发生变化的生态系统具有重要意义。

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