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简单的加和模拟高估了实际影响:氮和降雨的改变调节了变暖对土壤碳通量的影响。

Simple additive simulation overestimates real influence: altered nitrogen and rainfall modulate the effect of warming on soil carbon fluxes.

机构信息

Long-Term Research Station of Alpine Forest Ecosystems, Key Laboratory of Ecological Forestry Engineering, Institute of Ecology and Forestry, Sichuan Agricultural University, Chengdu, 611130, China.

Advanced Science Research Center, The City University of New York, New York, NY, 10031, USA.

出版信息

Glob Chang Biol. 2017 Aug;23(8):3371-3381. doi: 10.1111/gcb.13588. Epub 2017 Jan 25.

Abstract

Experiments and models have led to a consensus that there is positive feedback between carbon (C) fluxes and climate warming. However, the effect of warming may be altered by regional and global changes in nitrogen (N) and rainfall levels, but the current understanding is limited. Through synthesizing global data on soil C pool, input and loss from experiments simulating N deposition, drought and increased precipitation, we quantified the responses of soil C fluxes and equilibrium to the three single factors and their interactions with warming. We found that warming slightly increased the soil C input and loss by 5% and 9%, respectively, but had no significant effect on the soil C pool. Nitrogen deposition alone increased the soil C input (+20%), but the interaction of warming and N deposition greatly increased the soil C input by 49%. Drought alone decreased the soil C input by 17%, while the interaction of warming and drought decreased the soil C input to a greater extent (-22%). Increased precipitation stimulated the soil C input by 15%, but the interaction of warming and increased precipitation had no significant effect on the soil C input. However, the soil C loss was not significantly affected by any of the interactions, although it was constrained by drought (-18%). These results implied that the positive C fluxes-climate warming feedback was modulated by the changing N and rainfall regimes. Further, we found that the additive effects of [warming × N deposition] and [warming × drought] on the soil C input and of [warming × increased precipitation] on the soil C loss were greater than their interactions, suggesting that simple additive simulation using single-factor manipulations may overestimate the effects on soil C fluxes in the real world. Therefore, we propose that more multifactorial experiments should be considered in studying Earth systems.

摘要

实验和模型已经得出共识,即碳 (C) 通量和气候变暖之间存在正反馈。然而,氮 (N) 和降雨量水平的区域和全球变化可能会改变变暖的影响,但目前的理解有限。通过综合全球土壤 C 库数据、模拟氮沉积、干旱和增加降水的实验中的输入和损失,我们量化了土壤 C 通量和平衡对这三个单一因素及其与变暖相互作用的响应。我们发现,变暖分别轻微增加了土壤 C 的输入和损失 5%和 9%,但对土壤 C 库没有显著影响。单独的氮沉积增加了土壤 C 的输入 (+20%),但变暖与氮沉积的相互作用大大增加了土壤 C 的输入 49%。单独的干旱减少了土壤 C 的输入 17%,而变暖与干旱的相互作用则更大程度地减少了土壤 C 的输入 (-22%)。增加的降水刺激了土壤 C 的输入 15%,但变暖与增加降水的相互作用对土壤 C 的输入没有显著影响。然而,土壤 C 的损失不受任何相互作用的显著影响,尽管它受到干旱的限制 (-18%)。这些结果表明,变化的 N 和降雨格局调节了正的 C 通量-气候变暖反馈。此外,我们发现,[变暖×氮沉积]和[变暖×干旱]对土壤 C 输入的加和效应以及[变暖×增加降水]对土壤 C 损失的加和效应大于它们的相互作用,这表明使用单一因素操纵的简单加和模拟可能高估了土壤 C 通量在现实世界中的影响。因此,我们建议在研究地球系统时应考虑更多的多因素实验。

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