Authors
Wenxin Zhang, Hongxiao Jin, Sadegh Jamali, Zheng Duan, Mousong Wu, Youhua Ran, Jonas Ardö, Lars Eklundh, Anna Maria Jönsson, Huaiwei Sun, Guojie Hu, Xiaodong Wu, Hanbo Yun, Qingbai Wu, Ziteng Fu, Kailiang Yu, Feng Tian, Torbern Tagesson, Xing Li, Jingfeng Xiao
Publication date
2023/5/20
Journal
Science of the Total Environment
Volume
874
Pages
162425
Publisher
Elsevier
Description
Recent rapid warming has caused uneven impacts on the composition, structure, and functioning of northern ecosystems. It remains unknown how climatic drivers control linear and non-linear trends in ecosystem productivity. Based on a plant phenology index (PPI) product at a spatial resolution of 0.05° over 2000–2018, we used an automated polynomial fitting scheme to detect and characterize trend types (i.e., polynomial trends and no-trends) in the yearly-integrated PPI (PPIINT) for northern (> 30°N) ecosystems and their dependence on climatic drivers and ecosystem types. The averaged slope for the linear trends (p < 0.05) of PPIINT was positive across all the ecosystems, among which deciduous broadleaved forests and evergreen needle-leaved forests (ENF) showed the highest and lowest mean slopes, respectively. More than 50% of the pixels in ENF, arctic and boreal shrublands, and permanent …
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