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添加氮不会改变半干旱草原土壤呼吸对降水变化的对称响应。

Nitrogen addition does not alter symmetric responses of soil respiration to changing precipitation in a semi-arid grassland.

作者信息

Kong Lingjie, Song Jian, Ru Jingyi, Feng Jiayin, Hou Jiawei, Wang Xueke, Zhang Qingshan, Wang Haidao, Yue Xiaojing, Zhou Zhenxing, Sun Dasheng, Zhang Jiajia, Li Heng, Fan Yongge, Wan Shiqiang

机构信息

School of Life Sciences, Institute of Life Science and Green Development, Hebei University, Baoding, Hebei 071002, China.

International Joint Research Laboratory for Global Change Ecology, School of Life Sciences, Henan University, Kaifeng, Henan 475004, China.

出版信息

Sci Total Environ. 2024 Apr 15;921:171170. doi: 10.1016/j.scitotenv.2024.171170. Epub 2024 Feb 24.

Abstract

Concurrent changing precipitation regimes and atmospheric nitrogen (N) deposition can have profound influences on soil carbon (C) cycling. However, how N enrichment regulates the responses of soil C fluxes to increasing variability of precipitation remains elusive. As part of a field precipitation gradient experiment with nine levels of precipitation amounts (-60 %, -45 %, -30 %, -15 %, ambient precipitation, +15 %, +30 %, +45 %, and +60 %) and two levels of N addition (0 and 10 g N m yr) in a semi-arid temperate steppe on the Mongolian Plateau, this work was conducted to investigate the responses of soil respiration to decreased and increased precipitation (DP and IP), N addition, and their possible interactions. Averaged over the three years from 2019 to 2021, DP suppressed soil respiration by 16.1 %, whereas IP stimulated it by 27.4 %. Nitrogen addition decreased soil respiration by 7.1 % primarily via reducing microbial biomass C. Soil respiration showed symmetric responses to DP and IP within all the four precipitation variabilities (i.e., 15 %, 30 %, 45 %, and 60 %) under ambient N. Nevertheless, N addition did not alter the symmetric responses of soil respiration to changing precipitation due to the comparable sensitivities of microbial biomass and root growth to DP and IP under the N addition treatment. These findings indicate that intensified precipitation variability does not change but N addition could alleviate soil C releases. The unchanged symmetric responses of soil respiration to precipitation variability under N addition imply that N deposition may not change the response pattern of soil C releases to predicted increases in precipitation variability in grasslands, facilitating the robust projections of ecosystem C cycling under future global change scenarios.

摘要

降水模式的同时变化和大气氮(N)沉降会对土壤碳(C)循环产生深远影响。然而,氮富集如何调节土壤碳通量对降水变率增加的响应仍不清楚。作为在蒙古高原半干旱温带草原进行的田间降水梯度实验的一部分,该实验设置了九个降水水平(-60%、-45%、-30%、-15%、环境降水、+15%、+30%、+45%和+60%)和两个氮添加水平(0和10 g N m⁻² yr⁻¹),本研究旨在调查土壤呼吸对降水减少和增加(降水减少和降水增加)、氮添加及其可能相互作用的响应。在2019年至2021年的三年中,降水减少使土壤呼吸平均降低了16.1%,而降水增加则使其平均增加了27.4%。添加氮主要通过减少微生物生物量碳使土壤呼吸降低了7.1%。在环境氮条件下,土壤呼吸在所有四个降水变率(即15%、30%、45%和60%)内对降水减少和降水增加表现出对称响应。然而,由于在添加氮处理下微生物生物量和根系生长对降水减少和降水增加的敏感性相当,添加氮并未改变土壤呼吸对降水变化的对称响应。这些发现表明,降水变率增强不会改变但添加氮可以缓解土壤碳释放。添加氮条件下土壤呼吸对降水变率的对称响应不变意味着氮沉降可能不会改变草原土壤碳释放对预测降水变率增加的响应模式,有助于对未来全球变化情景下生态系统碳循环进行可靠预测。

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