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Microbial denitrification dominates nitrate losses from forest ecosystems

机译:微生物反硝化作用占森林生态系统硝酸盐损失的主要部分

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摘要

Denitrification removes fixed nitrogen (N) from the biosphere, thereby restricting the availability of this key limiting nutrient for terrestrial plant productivity. This microbially driven process has been exceedingly difficult to measure, however, given the large background of nitrogen gas (N2) in the atmosphere and vexing scaling issues associated with heterogeneous soil systems. Here, we use natural abundance of N and oxygen isotopes in nitrate (NO3) to examine dentrification rates across six forest sites in southern China and central Japan, which span temperate to tropical climates, as well as various stand ages and N deposition regimes. Our multiple stable isotope approach across soil to watershed scales shows that traditional techniques underestimate terrestrial denitrification fluxes by up to 98%, with annual losses of 5.6–30.1 kg of N per hectare via this gaseous pathway. These N export fluxes are up to sixfold higher than NO3 leaching, pointing to widespread dominance of denitrification in removing NO3 from forest ecosystems across a range of conditions. Further, we report that the loss of NO3 to denitrification decreased in comparison to leaching pathways in sites with the highest rates of anthropogenic N deposition.
机译:反硝化作用会从生物圈中去除固定的氮(N),从而限制了这种关键的限制养分对陆生植物生产力的可用性。然而,考虑到大气中氮气(N2)的大量背景以及与异质土壤系统相关的令人烦恼的水垢问题,这种微生物驱动的过程非常难以测量。在这里,我们使用硝酸盐(NO3 -)中自然的氮和氧同位素丰度来检查中国南部和日本中部六个森林站点的树突化率,这些站点跨越温带到热带气候,以及各种年龄和氮沉降制度。我们从土壤到分水岭尺度的多种稳定同位素方法表明,传统技术低估了陆地反硝化通量达98%,通过这种气态途径每年每公顷损失5.6-30.1 kgN。这些N的出口通量比NO3 -的淋洗高出六倍,这表明反硝化作用在一定条件下从森林生态系统中去除NO3 -时具有广泛的优势。此外,我们报告说,与人为氮沉积速率最高的站点中的浸出途径相比,NO3的反硝化损失减少了。

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