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Current Biology : CB|July 7, 2007
C4 Photosynthesis evolved in grasses via parallel adaptive genetic changesPascal-Antoine Christin, Nicolas Salamin, Vincent Savolainen, et al.Biological Journal of the Linnean Society. Linnean Society of London|August 2, 2016
A cautionary note on the use of Ornstein Uhlenbeck models in macroevolutionary studiesNatalie Cooper, Gavin H Thomas, Chris Venditti, et al.Ecology and Evolution|June 14, 2013
Taxonome: a software package for linking biological species dataThomas A Kluyver, Colin P OsborneProceedings. Biological Sciences|March 28, 2009
Ecological selection pressures for C4 photosynthesis in the grassesColin P Osborne, Robert P FreckletonPlant Physiology|September 16, 2003
The penalty of a long, hot summer. Photosynthetic acclimation to high CO2 and continuous light in "living fossil" conifersColin P Osborne, David J BeerlingPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 24, 2006
Nature's green revolution: the remarkable evolutionary rise of C4 plantsColin P Osborne, David J BeerlingJournal of Experimental Botany|November 5, 2008
Leaf cold acclimation and freezing injury in C3 and C4 grasses of the Mongolian PlateauMei-Zhen Liu, Colin P OsborneJournal of Experimental Botany|April 20, 2013
Differential freezing resistance and photoprotection in C3 and C4 eudicots and grassesMei-Zhen Liu, Colin P OsborneEcology|December 10, 2015
Fire ecology of C3 and C4 grasses depends on evolutionary history and frequency of burning but not photosynthetic typeBrad Ripley, Vernon Visser, Pascal-Antoine Christin, et al.Molecular Ecology|March 8, 2021
Low dispersal and ploidy differences in a grass maintain photosynthetic diversity despite gene flow and habitat overlapJill K Olofsson, Emma V Curran, Florence Nyirenda, et al.Pageof 16