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草地生产力对降水变化敏感性的全球格局及相关驱动因素

Global pattern and associated drivers of grassland productivity sensitivity to precipitation change.

作者信息

Wang Chao, Vera-Vélez Roy, Lamb Eric G, Wu Juying, Ren Fei

机构信息

Institute of Grassland, Flowers and Ecology, Beijing Academy of Agriculture and Forestry Sciences (BAAFS), No. 9 Shuguang Garden Middle Road, Haidian District, Beijing 100097, China.

Department of Plant Sciences, University of Saskatchewan, Saskatoon, SK S7N 5A8, Canada.

出版信息

Sci Total Environ. 2022 Feb 1;806(Pt 3):151224. doi: 10.1016/j.scitotenv.2021.151224. Epub 2021 Oct 30.

Abstract

Precipitation is a primary climatic determinant of grassland productivity, with many global change experiments manipulating precipitation. Here we examine the impacts of precipitation addition and reduction treatment intensity and duration on grassland above- (ANPP) and below- (BNPP) ground net primary productivity in a large-scale meta-analysis. We tested, 1) the double asymmetry model of sensitivity, specifically whether the sensitivity of productivity decreases with treatment intensity under increased precipitation and increases with treatment intensity under decreased precipitation, 2) whether the sensitivity of productivity to precipitation change decreases with treatment length, and 3) how the sensitivity of productivity changes with climate conditions. ANPP showed higher sensitivity than BNPP under increased precipitation but similar sensitivity to BNPP under decreased precipitation. The sensitivity of ANPP and BNPP decreased with increasing treatment intensity (e.g., percentage change in precipitation, ΔPPT) and leveled off in the long-term. With increased precipitation, the sensitivity of productivity decreased with increasing treatment length (e.g., experimental duration) and leveled off in the long-term, whereas the sensitivity increased with increasing treatment length under reduced precipitation. Furthermore, the sensitivity of productivity to precipitation change decreased with increasing mean annual precipitation and temperature. Finally, our meta-analysis shows that above- and belowground net primary productivity have asymmetric responses to precipitation change. Together these results highlight the complex mechanisms underlying the impacts of precipitation change, particularly the intensity and duration of such changes, on grassland productivity.

摘要

降水是草地生产力的主要气候决定因素,许多全球变化实验都对降水进行了调控。在此,我们通过一项大规模的荟萃分析,研究了增加和减少降水处理的强度及持续时间对草地地上(ANPP)和地下(BNPP)净初级生产力的影响。我们检验了:1)敏感性的双不对称模型,具体而言,即在降水增加时生产力的敏感性是否随处理强度降低,而在降水减少时随处理强度增加;2)生产力对降水变化的敏感性是否随处理时长降低;3)生产力的敏感性如何随气候条件变化。在降水增加时,ANPP的敏感性高于BNPP,但在降水减少时,其与BNPP的敏感性相似。ANPP和BNPP的敏感性均随处理强度(如降水变化百分比,ΔPPT)增加而降低,并在长期趋于平稳。在降水增加时,生产力的敏感性随处理时长(如实验持续时间)增加而降低,并在长期趋于平稳,而在降水减少时,敏感性则随处理时长增加而增加。此外,生产力对降水变化的敏感性随年平均降水量和温度的增加而降低。最后,我们的荟萃分析表明,地上和地下净初级生产力对降水变化的响应是不对称的。这些结果共同凸显了降水变化,特别是其强度和持续时间,对草地生产力影响背后的复杂机制。

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