Responses of terrestrial nitrogen pools and dynamics to different patterns of freeze‐thaw cycle: A meta‐analysis

自行车 冻土带 环境科学 生态系统 陆地生态系统 硝化作用 矿化(土壤科学) 生物地球化学循环 营养循环 营养物 浸出(土壤学) 氮气循环 氮气 温带气候 气候变化 生态学 生物 环境化学 土壤水分 化学 土壤科学 林业 有机化学 地理
作者
Decai Gao,Lei Zhang,Jun Liu,Bo Peng,Zhenzhen Fan,Weiwei Dai,Ping Jiang,Edith Bai
出处
期刊:Global Change Biology [Wiley]
卷期号:24 (6): 2377-2389 被引量:83
标识
DOI:10.1111/gcb.14010
摘要

Abstract Altered freeze‐thaw cycle ( FTC ) patterns due to global climate change may affect nitrogen (N) cycling in terrestrial ecosystems. However, the general responses of soil N pools and fluxes to different FTC patterns are still poorly understood. Here, we compiled data of 1519 observations from 63 studies and conducted a meta‐analysis of the responses of 17 variables involved in terrestrial N pools and fluxes to FTC . Results showed that under FTC treatment, soil NH 4 + , NO 3 − , NO 3 − leaching, and N 2 O emission significantly increased by 18.5%, 18.3%, 66.9%, and 144.9%, respectively; and soil total N ( TN ) and microbial biomass N ( MBN ) significantly decreased by 26.2% and 4.7%, respectively; while net N mineralization or nitrification rates did not change. Temperate and cropland ecosystems with relatively high soil nutrient contents were more responsive to FTC than alpine and arctic tundra ecosystems with rapid microbial acclimation. Therefore, altered FTC patterns (such as increased duration of FTC , temperature of freeze, amplitude of freeze, and frequency of FTC ) due to global climate warming would enhance the release of inorganic N and the losses of N via leaching and N 2 O emissions. Results of this meta‐analysis help better understand the responses of N cycling to FTC and the relationships between FTC patterns and N pools and N fluxes.

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