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CAN Canopy Addition of Nitrogen Better Illustrate the Effect of Atmospheric Nitrogen Deposition on Forest Ecosystem?

机译:氮冠层能否更好地说明大气氮沉降对森林生态系统的影响?

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摘要

Increasing atmospheric nitrogen (N) deposition could profoundly impact community structure and ecosystem functions in forests. However, conventional experiments with understory addition of N (UAN) largely neglect canopy-associated biota and processes and therefore may not realistically simulate atmospheric N deposition to generate reliable impacts on forest ecosystems. Here we, for the first time, designed a novel experiment with canopy addition of N (CAN) vs. UAN and reviewed the merits and pitfalls of the two approaches. The following hypotheses will be tested: i) UAN overestimates the N addition effects on understory and soil processes but underestimates those on canopy-associated biota and processes, ii) with low-level N addition, CAN favors canopy tree species and canopy-dwelling biota and promotes the detritus food web, and iii) with high-level N addition, CAN suppresses canopy tree species and other biota and favors rhizosphere food web. As a long-term comprehensive program, this experiment will provide opportunities for multidisciplinary collaborations, including biogeochemistry, microbiology, zoology, and plant science to examine forest ecosystem responses to atmospheric N deposition.
机译:大气中氮的增加会深刻影响森林的群落结构和生态系统功能。然而,在地下添加N(UAN)的常规实验在很大程度上忽略了与冠层相关的生物区系和过程,因此可能无法实际模拟大气中的N沉积以对森林生态系统产生可靠的影响。在这里,我们首次设计了一个新的实验,该实验采用了冠层添加N(CAN)与UAN的对比,并回顾了这两种方法的优缺点。将检验以下假设:i)UAN高估了氮对林下和土壤过程的影响,但低估了对冠层相关生物区系和过程的影响; ii)低氮含量,CAN有利于冠层树种和冠层生物iii)通过添加高水平的氮,可以抑制冠层树种和其他生物群,并有利于根际食物网。作为一项长期的综合计划,该实验将为多学科合作提供机会,包括生物地球化学,微生物学,动物学和植物科学,以研究森林生态系统对大气氮沉降的响应。

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