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Global Change Biology|May 7, 2025
Microbial Immobilization Shapes the Non-Linear Response of Allochthonous Nitrogen Retention to Grassland Acidification Within Soil AggregatesBaitao Gu, Ruzhen Wang, Shaodong Wang, et al.Plos One|August 27, 2013
Warming reduces carbon losses from grassland exposed to elevated atmospheric carbon dioxideElise Pendall, Jana L Heisler-White, David G Williams, et al.Global Change Biology|August 25, 2015
Decadally cycling soil carbon is more sensitive to warming than faster-cycling soil carbonJunjie Lin, Biao Zhu, Weixin ChengThe New Phytologist|September 26, 2012
Climate change alters stoichiometry of phosphorus and nitrogen in a semiarid grasslandFeike A Dijkstra, Elise Pendall, Jack A Morgan, et al.Plant, Cell & Environment|July 1, 2025
Expanding the Root Economics Space With Root Nitrogen ReallocationYing Zhang, Ruzhen Wang, Kaili Xue, et al.Global Change Biology|February 14, 2025
Stronger Response of Plant N:P to Nitrogen Enrichment When Considering RootsYu Ning, Feike A Dijkstra, Xiao-Sa Liang, et al.Oecologia|March 18, 2017
Herbivore-induced changes in plant carbon allocation: assessment of below-ground C fluxes using carbon-14J Nathaniel Holland, Weixin Cheng, D A CrossleyThe Science of the Total Environment|August 12, 2021
Plant inputs mediate the linkage between soil carbon and net nitrogen mineralizationXiuwei Zhang, Biao Zhu, Feihai Yu, et al.Plant, Cell & Environment|February 19, 2024
Rhizosphere priming promotes plant nitrogen acquisition by microbial necromass recyclingJohanna Pausch, Maire Holz, Biao Zhu, et al.Ecology|December 19, 2021
Nitrogen enrichment buffers phosphorus limitation by mobilizing mineral-bound soil phosphorus in grasslandsRuzhen Wang, Junjie Yang, Heyong Liu, et al.Pageof 7