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解耦氮沉降对生态系统功能的直接和间接影响。

Decoupling the direct and indirect effects of nitrogen deposition on ecosystem function.

作者信息

Manning Pete, Newington John E, Robson Helen R, Saunders Mark, Eggers Till, Bradford Mark A, Bardgett Richard D, Bonkowski Michael, Ellis Richard J, Gange Alan C, Grayston Susan J, Kandeler Ellen, Marhan Sven, Reid Eileen, Tscherko Dagmar, Godfray H Charles J, Rees Mark

机构信息

Natural Environment Research Council Centre for Population Biology, Department of Biological Sciences, Imperial College London, Silwood Park Campus, Ascot, Berkshire SL5 7PY, UK.

出版信息

Ecol Lett. 2006 Sep;9(9):1015-24. doi: 10.1111/j.1461-0248.2006.00959.x.

Abstract

Elevated nitrogen (N) inputs into terrestrial ecosystems are causing major changes to the composition and functioning of ecosystems. Understanding these changes is challenging because there are complex interactions between 'direct' effects of N on plant physiology and soil biogeochemistry, and 'indirect' effects caused by changes in plant species composition. By planting high N and low N plant community compositions into high and low N deposition model terrestrial ecosystems we experimentally decoupled direct and indirect effects and quantified their contribution to changes in carbon, N and water cycling. Our results show that direct effects on plant growth dominate ecosystem response to N deposition, although long-term carbon storage is reduced under high N plant-species composition. These findings suggest that direct effects of N deposition on ecosystem function could be relatively strong in comparison with the indirect effects of plant community change.

摘要

陆地生态系统中氮(N)输入的增加正在导致生态系统的组成和功能发生重大变化。理解这些变化具有挑战性,因为氮对植物生理和土壤生物地球化学的“直接”影响与植物物种组成变化所导致的“间接”影响之间存在复杂的相互作用。通过将高氮和低氮植物群落组成种植到高氮和低氮沉降模式的陆地生态系统中,我们通过实验分离了直接和间接影响,并量化了它们对碳、氮和水循环变化的贡献。我们的结果表明,尽管在高氮植物物种组成下长期碳储存减少,但对植物生长的直接影响主导了生态系统对氮沉降的响应。这些发现表明,与植物群落变化的间接影响相比,氮沉降对生态系统功能的直接影响可能相对较强。

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