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Soil microbial respiration adapts to higher and longer warming experiments at the global scale

Bibliographic Data

ID15550448
AuthorsLu Yang (0000-0002-2623-6789), Yang Lu (0000-0003-2368-7856, State Forestry and Grassland Administration), Junxiao Pan (0000-0003-0416-3336, Chinese Academy of Sciences), Jinsong Wang (0000-0002-2526-6193, University of Chinese Academy of Sciences, corresponding author), Dashuan Tian (0000-0001-8023-1180, Institute of Geographic Sciences and Natural Resources Research), Chunyu Zhang (0000-0002-3590-9164, State Forestry and Grassland Administration), Xiuhai Zhao (0000-0003-0879-4063, Beijing Forestry University), Jian Hu (0009-0005-3674-8138, Southwest Minzu University), Wen Yang (0000-0002-7192-1988, Shaanxi Normal University), Yingjie Yan (0000-0003-0659-5503, Institute of Geographic Sciences and Natural Resources Research), Fangfang Ma (0000-0002-8185-7908, Chinese Academy of Sciences), Weinan Chen (0000-0003-0227-4454, Chinese Academy of Sciences), Quan Quan (0000-0001-7865-4336, Institute of Geographic Sciences and Natural Resources Research), Peiyan Wang (0000-0001-8914-1210, Chinese Academy of Sciences, corresponding author), Shuli Niu (0000-0002-2394-2864, Institute of Geographic Sciences and Natural Resources Research)
Year2023
Volume18
Issue3
Pages034044-034044
Publication date2023-02-24
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/acbecb
OpenAlexW4321764624
LanguageEN
Citations received1
References cited64

Warming can affect soil microbial respiration by changing microbial biomass and community composition. The responses of soil microbial respiration to warming under experimental conditions are also related to background conditions and the experimental setup, such as warming magnitude, duration, and methods. However, the global pattern of soil microbial respiration in response to warming and underlying mechanisms remain unclear. Here, we conducted a global meta-analysis of the response of soil microbial respiration to warming by synthesizing data from 187 field experiments. We found that experimental warming significantly increased soil microbial respiration and microbial biomass carbon by 11.8% and 6.4%, respectively. The warming-induced increase in microbial carbon decomposition was positively correlated with increased microbial biomass carbon, but not community composition. Moreover, the positive response of soil microbial respiration marginally increased with warming magnitude, particularly in short-term experiments, but soil microbial respiration adapted to higher warming at longer timescales. Warming method did not significantly affect the response of microbial respiration, except for a significant effect with open top chamber warming. In addition, the impact of warming on soil microbial respiration was more pronounced in wetter sites and in sites with lower soil pH and higher soil organic carbon. Our findings suggest that warming stimulates microbial respiration mainly by increasing microbial biomass carbon. We also highlight the importance of the combination of warming magnitude and duration in regulating soil microbial respiration responses, and the dependence of warming effects upon background precipitation and soil conditions. These findings can advance our understanding of soil carbon losses and carbon-climate feedbacks in a warm world

Agronomy · Biology · Biomass (ecology · Botany · Carbon cycle · Climate change · Ecosystem · Global warming · Microbial population biology · Respiration · Soil carbon · Soil respiration · Soil water · Environmental Science · Gut microbiota and health · Microbial Community Ecology and Physiology · Soil Carbon and Nitrogen Dynamics · Ecology · Soil Science

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Unique citing works1
Citations per year1
Citation span2025 - 2025 (1)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 1

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