Global patterns of terrestrial nitrogen and phosphorus limitation

被引:10
|
作者
Enzai Du
César Terrer
Adam F. A. Pellegrini
Anders Ahlström
Caspar J. van Lissa
Xia Zhao
Nan Xia
Xinhui Wu
Robert B. Jackson
机构
[1] Beijing Normal University,State Key Laboratory of Earth Surface Processes and Resource Ecology, Faculty of Geographical Science
[2] Beijing Normal University,School of Natural Resources, Faculty of Geographical Science
[3] Stanford University,Department of Earth System Science
[4] Lawrence Livermore National Laboratory,Physical and Life Sciences Directorate
[5] Lund University,Department of Physical Geography and Ecosystem Science
[6] Lund University,Center for Middle Eastern Studies
[7] Utrecht University,Department of Methodology and Statistics
[8] Chinese Academy of Sciences,State Key Laboratory of Vegetation and Environmental Change, Institute of Botany
[9] Stanford University,Woods Institute for the Environment and Precourt Institute for Energy
来源
Nature Geoscience | 2020年 / 13卷
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摘要
Nitrogen (N) and phosphorus (P) limitation constrains the magnitude of terrestrial carbon uptake in response to elevated carbon dioxide and climate change. However, global maps of nutrient limitation are still lacking. Here we examined global N and P limitation using the ratio of site-averaged leaf N and P resorption efficiencies of the dominant species across 171 sites. We evaluated our predictions using a global database of N- and P-limitation experiments based on nutrient additions at 106 and 53 sites, respectively. Globally, we found a shift from relative P to N limitation for both higher latitudes and precipitation seasonality and lower mean annual temperature, temperature seasonality, mean annual precipitation and soil clay fraction. Excluding cropland, urban and glacial areas, we estimate that 18% of the natural terrestrial land area is significantly limited by N, whereas 43% is relatively P limited. The remaining 39% of the natural terrestrial land area could be co-limited by N and P or weakly limited by either nutrient alone. This work provides both a new framework for testing nutrient limitation and a benchmark of N and P limitation for models to constrain predictions of the terrestrial carbon sink.
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页码:221 / 226
页数:5
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