Divergent responses of carbon fluxes to elevated temperature and precipitation: A meta-analysis in North Hemisphere grassland ecosystems

IF 3.5 2区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Global Ecology and Conservation Pub Date : 2024-11-06 DOI:10.1016/j.gecco.2024.e03289
Weikang Zhang , Shan Cong , Zhaogang Liu , Ming Zhao , Zhaoxia Jiang , Congcong Zheng
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Abstract

The manipulation experiments involving increased precipitation and elevated temperature have elucidated a series of responses to the carbon fluxes (gross ecosystem productivity (GEP), ecosystem respiration (ER), and net ecosystem productivity (NEP)) in grassland ecosystems. It is still unclear how the duration, magnitude or local climate conditions of these manipulation experiments can affect the response of GEP, ER, and NEP. Here, we conducted a meta-analysis using data from 50 published studies that manipulated precipitation or temperature, while measuring GEP, ER, and NEP in North Hemisphere grassland ecosystems. The results showed that increased precipitation significantly increased the GEP and ER of grassland ecosystems in the Northern Hemisphere, with an average increase of 9.8 % and 12.5 %, respectively. In contrast to increased precipitation, warming did not have a significant effect on GEP and ER. Meantime, there was no significant response of the NEP to both elevated temperature and increased precipitation. Furthermore, we found that the responses of carbon fluxes in North Hemisphere grassland ecosystems were associated with the magnitude and duration of increased precipitation, as well as to local temperature and precipitation changes induced by increased precipitation and elevated temperature. GEP was positively correlated with the local temperature under warming and increased precipitation. These findings emphasize the divergent response of carbon fluxes to climate factors change such as temperature and precipitation in North Hemisphere grassland ecosystems, which helps us better protect grasslands and predict ecosystem functions in the future.
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碳通量对温度升高和降水的不同反应:北半球草原生态系统的荟萃分析
增加降水量和升高温度的操控实验阐明了草原生态系统碳通量(生态系统总生产力(GEP)、生态系统呼吸作用(ER)和生态系统净生产力(NEP))的一系列响应。目前还不清楚这些操纵实验的持续时间、幅度或当地气候条件如何影响 GEP、ER 和 NEP 的响应。在此,我们利用 50 项已发表的研究数据进行了一项荟萃分析,这些研究操纵了降水或温度,同时测量了北半球草地生态系统的 GEP、ER 和 NEP。结果显示,降水量的增加显著提高了北半球草原生态系统的GEP和ER,平均增幅分别为9.8%和12.5%。与降水量增加相比,气候变暖对 GEP 和 ER 的影响并不明显。同时,NEP 对温度升高和降水增加都没有明显的反应。此外,我们还发现,北半球草地生态系统碳通量的响应与降水增加的幅度和持续时间有关,也与降水增加和温度升高引起的当地温度和降水变化有关。在气温升高和降水增加的情况下,GEP 与当地气温呈正相关。这些发现强调了北半球草原生态系统中碳通量对温度和降水等气候因子变化的不同响应,有助于我们更好地保护草原和预测未来的生态系统功能。
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来源期刊
Global Ecology and Conservation
Global Ecology and Conservation Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
8.10
自引率
5.00%
发文量
346
审稿时长
83 days
期刊介绍: Global Ecology and Conservation is a peer-reviewed, open-access journal covering all sub-disciplines of ecological and conservation science: from theory to practice, from molecules to ecosystems, from regional to global. The fields covered include: organismal, population, community, and ecosystem ecology; physiological, evolutionary, and behavioral ecology; and conservation science.
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