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Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|January 11, 2012
Evolution of C4 plants: a new hypothesis for an interaction of CO2 and water relations mediated by plant hydraulicsColin P Osborne, Lawren SackAnnals of Botany|January 9, 2024
Diversification of quantitative morphological traits in wheatYixiang Shan, Colin P OsbornePlant, Cell & Environment|July 22, 2024
Stomatal dynamics in Alloteropsis semialata arise from the evolving interplay between photosynthetic physiology, stomatal size and biochemistryYanmin Zhou, Colin P OsborneJournal of Experimental Botany|December 16, 2014
Water relations traits of C4 grasses depend on phylogenetic lineage, photosynthetic pathway, and habitat water availabilityHui Liu, Colin P OsborneEcology Letters|August 8, 2015
Photosynthetic innovation broadens the niche within a single speciesMarjorie R Lundgren, Guillaume Besnard, Brad S Ripley, et al.Nature Plants|May 14, 2021
Crop origins explain variation in global agricultural relevanceRubén Milla, Colin P OsborneProceedings of the National Academy of Sciences of the United States of America|January 29, 2014
Stability-activity tradeoffs constrain the adaptive evolution of RubisCORomain A Studer, Pascal-Antoine Christin, Mark A Williams, et al.The New Phytologist|December 17, 2008
Thlaspi caerulescens (Brassicaceae) population genetics in western Switzerland: is the genetic structure affected by natural variation of soil heavy metal concentrations?Guillaume Besnard, Nevena Basic, Pascal-Antoine Christin, et al.The New Phytologist|April 22, 2021
Widespread lateral gene transfer among grassesSamuel G S Hibdige, Pauline Raimondeau, Pascal-Antoine Christin, et al.The New Phytologist|February 23, 2024
C4 photosynthesis provided an immediate demographic advantage to populations of the grass Alloteropsis semialataGraciela Sotelo, Sara Gamboa, Luke T Dunning, et al.Pageof 16