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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Changes in nitrogen cycling during the past century in a northern hardwood forest
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Changes in nitrogen cycling during the past century in a northern hardwood forest

机译:北方硬木森林中氮的循环在过去一个世纪中的变化

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Nitrogen (N) availability, defined here as the supply of N to terrestrial plants and soil microorganisms relative to their N demands, limits the productivity of many temperate zone forests and in part determines ecosystem carbon (C) content. Despite multi-decadal monitoring of N in streams, the long-term record of N availability in forests of the northeastern United States is largely unknown. Therefore, although these forests have been receiving anthropogenic N deposition for the past few decades, it is still uncertain whether terrestrial N availability has changed during this time and, subsequently, whether forest ecosystems have responded to increased N deposition. Here, we used stable N isotopes in tree rings and lake sediments to demonstrate that N availability in a northeastern forest has declined over the past 75 years, likely because of ecosystem recovery from Euro-American land use. Forest N availability has only recently returned to levels forecast from presettlement trajectories, rendering the trajectory of future forest N cycling uncertain. Our results suggest that chronic disturbances caused by humans, especially logging and agriculture, are major drivers of terrestrial N cycling in forest ecosystems today, even a century after cessation.
机译:氮(N)的可用性在这里定义为陆生植物和土壤微生物相对于其氮需求的氮供应,这限制了许多温带森林的生产力,并部分决定了生态系统碳(C)的含量。尽管对河流中的N进行了多年代的监测,但在美国东北部森林中长期获取N的记录仍然未知。因此,尽管这些森林在过去的几十年中一直在人为地吸收氮,但仍不确定在此期间陆地氮的有效性是否发生了变化,以及随后森林生态系统是否对增加的氮沉积做出了反应。在这里,我们使用了年轮和湖泊沉积物中的稳定N同位素来证明,在过去的75年中,东北森林中的N可用性一直在下降,这很可能是由于欧美土地利用生态系统的恢复。森林N的可利用性直到最近才恢复到预设轨迹的预测水平,这使得未来森林N循环的轨迹变得不确定。我们的结果表明,由人类引起的慢性干扰,尤其是伐木和农业,是当今森林生态系统中陆地氮循环的主要驱动力,即使在停止生长一个世纪之后。

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