草原
环境科学
植被(病理学)
生态系统
生产力
气候变化
气候学
高原(数学)
降水
涡度相关法
碳循环
全球变暖
初级生产
全球变化
陆地生态系统
地理
全球气候
自然地理学
大气科学
碳通量
初级生产力
固碳
弹道
焊剂(冶金)
生态学
作者
Cuihai You,Shiping Chen,Zhiqin Tu,Chenyu Bian,Erqian Cui,Kun Huang,Fayu Wan,Jiaye Ping,Ning Wei,Jianyang Xia
标识
DOI:10.1038/s41467-025-64565-x
摘要
Grasslands, Earth's most widespread terrestrial ecosystems, are vital for global carbon sequestration and food security. A key indicator of these functions is vegetation growth peak, reflecting maximum seasonal productivity. However, whether this growth peak consistently increases across global grasslands remains unknown. Here, using satellite-derived vegetation data from 1982 to 2021, we reveal a widespread increase in grassland growth peaks, with 71% (20/28) IPCC climate regions exhibiting significant trends. However, this trend reverses between 1998 and 2009 in 64% of regions, notably across the Tibetan Plateau and East Asia. The reversal is supported by a global gross primary productivity dataset generated via machine learning, trained on eddy covariance flux data. The interruption is primarily associated with a global-scale decadal drought. These findings demonstrate that persistent drought can disrupt the upward trajectory of grassland growth peaks, posing a spatially uneven but widespread threat to ecological functions of grasslands under climate change.
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