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如果不明确表示北极小型哺乳动物的放牧,那么对 CO 和变暖的模型响应就会被低估。

Model responses to CO and warming are underestimated without explicit representation of Arctic small-mammal grazing.

机构信息

The Ecosystems Center, Marine Biological Laboratory, Woods Hole, Massachusetts, 02543, USA.

Department of Ecology, Evolution and Environmental Biology, Columbia University, New York, New York, 10027, USA.

出版信息

Ecol Appl. 2022 Jan;32(1):e02478. doi: 10.1002/eap.2478. Epub 2021 Dec 8.

Abstract

We use a simple model of coupled carbon and nitrogen cycles in terrestrial ecosystems to examine how "explicitly representing grazers" vs. "having grazer effects implicitly aggregated in with other biogeochemical processes in the model" alters predicted responses to elevated carbon dioxide and warming. The aggregated approach can affect model predictions because grazer-mediated processes can respond differently to changes in climate compared with the processes with which they are typically aggregated. We use small-mammal grazers in a tundra as an example and find that the typical three-to-four-year cycling frequency is too fast for the effects of cycle peaks and troughs to be fully manifested in the ecosystem biogeochemistry. We conclude that implicitly aggregating the effects of small-mammal grazers with other processes results in an underestimation of ecosystem response to climate change, relative to estimations in which the grazer effects are explicitly represented. The magnitude of this underestimation increases with grazer density. We therefore recommend that grazing effects be incorporated explicitly when applying models of ecosystem response to global change.

摘要

我们使用一个简单的陆地生态系统碳氮耦合循环模型来研究“明确表示食草动物”与“将食草动物的影响隐含地聚合在模型中的其他生物地球化学过程中”如何改变对二氧化碳升高和变暖的预测响应。聚合方法会影响模型预测,因为与通常与之聚合的过程相比,食草动物介导的过程可能对气候变化的反应不同。我们以苔原上的小型哺乳动物食草动物为例,发现典型的三到四年循环频率太快,以至于循环峰值和低谷的影响无法在生态系统生物地球化学中完全表现出来。我们的结论是,与明确表示食草动物影响的估计相比,将小型哺乳动物食草动物的影响隐含地聚合在一起会导致对气候变化的生态系统响应的低估。这种低估的幅度随食草动物密度的增加而增加。因此,我们建议在应用生态系统对全球变化的响应模型时,应明确纳入放牧效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d20/9285540/7f4eda3b2286/EAP-32-0-g004.jpg

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