氮气
环境科学
降水
氮同位素
生态系统
稳定同位素比值
氮气循环
陆地生态系统
全球变化
大气科学
陆生植物
δ15N
气候变化
农学
碳同位素
生态学
生长季节
氮缺乏
碳循环
同位素分析
全球变暖
植物群落
扰动(地质)
碳纤维
同位素
植物功能类型
植被(病理学)
作者
Songbo Tang,Yang Qiao,Jianyang Xia,Erqian Cui
标识
DOI:10.1038/s41467-026-70358-7
摘要
Plant nitrogen availability critically limits plant growth and thus constrains terrestrial carbon sequestration. Growing evidence points to a recent decline in plant nitrogen availability, yet the global consistency of this trend and its underlying drivers remain unclear. Here, we reconstruct the spatiotemporal trajectory of plant nitrogen availability (1980-2020) using four machine-learning algorithms applied to a global database of 37,268 foliar stable nitrogen isotopes measurements and ancillary climate data. We first find high spatial heterogeneity in foliar stable nitrogen isotopes, primarily linked to mean annual temperature. Then, we discover that foliar stable nitrogen isotopes declined primarily during the 1980s, and subsequently remained stable across 44% of land areas. Moreover, the dominant driver in temporal variations of foliar stable nitrogen isotopes shifts from CO2 (1980-1988) to precipitation (1989-2020). These patterns collectively reveal divergent plant nitrogen availability trajectories and highlight the increasing role of precipitation in shaping terrestrial nitrogen cycles over the past decades.
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