永久冻土
生物地球化学循环
生态系统
植被(病理学)
环境科学
横断面
碳循环
陆地生态系统
自然地理学
初级生产
气候变化
氮气循环
大气科学
生态学
氮气
地球科学
地质学
地理
化学
生物
医学
病理
有机化学
作者
Dan Kou,Guibiao Yang,Fei Li,Xuehui Feng,Dianye Zhang,Chao Mao,Qiwen Zhang,Yunfeng Peng,Chengjun Ji,Qiuan Zhu,Yunting Fang,Xueyan Liu,Xu-Ri Xu-Ri,Siqi Li,Jia Deng,Xunhua Zheng,Jingyun Fang,Yuanhe Yang
标识
DOI:10.1038/s41467-020-17169-6
摘要
Abstract The ecosystem carbon (C) balance in permafrost regions, which has a global significance in understanding the terrestrial C-climate feedback, is significantly regulated by nitrogen (N) dynamics. However, our knowledge on temporal changes in vegetation N limitation (i.e., the supply of N relative to plant N demand) in permafrost ecosystems is still limited. Based on the combination of isotopic observations derived from a re-sampling campaign along a ~3000 km transect and simulations obtained from a process-based biogeochemical model, here we detect changes in ecosystem N cycle across the Tibetan alpine permafrost region over the past decade. We find that vegetation N limitation becomes stronger despite the increased available N production. The enhanced N limitation on vegetation growth is driven by the joint effects of elevated plant N demand and gaseous N loss. These findings suggest that N would constrain the future trajectory of ecosystem C cycle in this alpine permafrost region.
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