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Asymmetric Responses of Primary Productivity to Altered Precipitation Simulated by Land Surface Models across Three Long-term Grassland Sites

Donghai Wu, P. Ciais, Nicolas Viovy, Alan K. Knapp, Kevin R. Wilcox, Michael Bahn, M. D. Smith, Akihiro Itô, Almut Arneth, Anna Harper, Anna Ukkola, Athanasios Paschalis, Benjamin Poulter, Chengbin Peng, Christian H. Reick, Daniel J. Hayes, Daniel Ricciuto, David Reinthaler, G. Chen, Haifeng Tian, G. Helene, Jakob Zscheischler, Jiafu Mao, Johannes Ingrisch, Julia E. M. S. Nabel, Julia Pongratz, Lena Boysen, Markus Kautz, Michael Schmitt, M. Krohn, Ning Zeng, Patrick Meir, Q. Zhang, Qiuan Zhu, Roland Hasibeder, Sara Vicca, Sebastian Sippel, Shree R. S. Dangal, Simone Fatichi, Stephen Sitch, Xiaoying Shi, Yiran Wang, Yiqi Luo, Y. Liu, Shilong Piao

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Key concepts: Grassland, Environmental science, Term (time), Precipitation, Productivity, Primary production, Primary productivity, Atmospheric sciences

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Asymmetric Responses of Primary Productivity to Altered Precipitation Simulated by Land Surface Models across Three Long-term Grassland Sites — Research Paper | ScholarLens