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Global Change Biology|January 14, 2017
Emergent climate and CO<sub>2</sub> sensitivities of net primary productivity in ecosystem models do not agree with empirical data in temperate forests of eastern North AmericaChristine R Rollinson, Yao Liu, Ann Raiho, et al.Proceedings of the National Academy of Sciences of the United States of America|January 8, 2020
High productivity in hybrid-poplar plantations without isoprene emission to the atmosphereRussell K Monson, Barbro Winkler, Todd N Rosenstiel, et al.Plant, Cell & Environment|February 13, 2024
The impacts of rising vapour pressure deficit in natural and managed ecosystemsKimberly A Novick, Darren L Ficklin, Charlotte Grossiord, et al.Proceedings of the National Academy of Sciences of the United States of America|December 7, 2005
Forest response to elevated CO2 is conserved across a broad range of productivityRichard J Norby, Evan H Delucia, Birgit Gielen, et al.Science (New York, N.Y.)|May 13, 2022
Cross-biome synthesis of source versus sink limits to tree growthAntoine Cabon, Steven A Kannenberg, Altaf Arain, et al.Ecology Letters|February 10, 2011
Increases in the flux of carbon belowground stimulate nitrogen uptake and sustain the long-term enhancement of forest productivity under elevated CO₂John E Drake, Anne Gallet-Budynek, Kirsten S Hofmockel, et al.Cambridge Prisms. Drylands|July 10, 2026
An overview of the NASA Adaptation and Response in Drylands field experiment scoping studyAndrew F Feldman, Sasha C Reed, Konrad Wessels, et al.Global Change Biology|July 15, 2026
Adaptation and Response in Drylands: A Dryland Research Agenda and Campaign StrategyAndrew F Feldman, Sasha C Reed, Konrad Wessels, et al.The New Phytologist|August 14, 2020
Integrating the evidence for a terrestrial carbon sink caused by increasing atmospheric CO<sub>2</sub>Anthony P Walker, Martin G De Kauwe, Ana Bastos, et al.Pageof 3