陆地生态系统
生态系统
δ15N
食草动物
陆生植物
营养物
环境科学
生态学
生长季节
地球大气中的二氧化碳
航程(航空)
生产力
降水
二氧化碳
稳定同位素比值
δ13C
生物
地理
经济
材料科学
复合材料
气象学
量子力学
宏观经济学
物理
作者
Joseph M. Craine,Andrew J. Elmore,Lixin Wang,Julieta N. Aranibar,Marijn Bauters,Pascal Boeckx,Brooke E. Crowley,Melissa A. Dawes,Sylvain Delzon,Alex Fajardo,Yunting Fang,Lei Fujiyoshi,Alan Gray,Rossella Guerrieri,Michael J. Gundale,David J. Hawke,Peter Hietz,Mathieu Jonard,Elizabeth Kearsley,Tanaka Kenzo
标识
DOI:10.1038/s41559-018-0694-0
摘要
Human societies depend on an Earth system that operates within a constrained range of nutrient availability, yet the recent trajectory of terrestrial nitrogen (N) availability is uncertain. Examining patterns of foliar N concentrations and isotope ratios (δ15N) from more than 43,000 samples acquired over 37 years, here we show that foliar N concentration declined by 9% and foliar δ15N declined by 0.6-1.6‰. Examining patterns across different climate spaces, foliar δ15N declined across the entire range of mean annual temperature and mean annual precipitation tested. These results suggest declines in N supply relative to plant demand at the global scale. In all, there are now multiple lines of evidence of declining N availability in many unfertilized terrestrial ecosystems, including declines in δ15N of tree rings and leaves from herbarium samples over the past 75-150 years. These patterns are consistent with the proposed consequences of elevated atmospheric carbon dioxide and longer growing seasons. These declines will limit future terrestrial carbon uptake and increase nutritional stress for herbivores.
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