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Global Change Biology|November 8, 2014
The capacity to cope with climate warming declines from temperate to tropical latitudes in two widely distributed Eucalyptus speciesJohn E Drake, Michael J Aspinwall, Sebastian Pfautsch, et al.Proceedings of the National Academy of Sciences of the United States of America|January 9, 2021
Multiple constraints cause positive and negative feedbacks limiting grassland soil CO2 efflux under CO2 enrichmentPhilip A Fay, Dafeng Hui, Robert B Jackson, et al.Global Change Biology|December 29, 2017
Flowering in grassland predicted by CO2 and resource effects on species aboveground biomassPhilip A Fay, Michael J Aspinwall, Harold P Collins, et al.The New Phytologist|October 28, 2018
CO2 enrichment and soil type additively regulate grassland productivityH Wayne Polley, Michael J Aspinwall, Harold P Collins, et al.Plant Physiology|June 2, 2016
Promises and Challenges of Eco-Physiological Genomics in the Field: Tests of Drought Responses in SwitchgrassJohn T Lovell, Eugene V Shakirov, Scott Schwartz, et al.Global Change Biology|February 13, 2019
Range size and growth temperature influence Eucalyptus species responses to an experimental heatwaveMichael J Aspinwall, Sebastian Pfautsch, Mark G Tjoelker, et al.Tree Physiology|October 17, 2024
Photosynthetic temperature responses in leaves and canopies: why temperature optima may disagree at different scalesDushan P Kumarathunge, Belinda E Medlyn, John E Drake, et al.Tree Physiology|May 10, 2018
Photosynthesis and carbon allocation are both important predictors of genotype productivity responses to elevated CO2 in Eucalyptus camaldulensisMichael J Aspinwall, Chris J Blackman, Víctor Resco de Dios, et al.The New Phytologist|April 8, 2020
Leaf trait variation is similar among genotypes of Eucalyptus camaldulensis from differing climates and arises in plastic responses to the seasons rather than water availabilityShinichi Asao, Lucy Hayes, Michael J Aspinwall, et al.Global Change Biology|January 10, 2018
Trees tolerate an extreme heatwave via sustained transpirational cooling and increased leaf thermal toleranceJohn E Drake, Mark G Tjoelker, Angelica Vårhammar, et al.Pageof 5