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Ecology and Evolution|March 26, 2021
Traits explain sorting of C4 grasses along a global precipitation gradientEmma C Jardine, Gavin H Thomas, Colin P OsborneEvolution; International Journal of Organic Evolution|October 20, 2010
Complex evolutionary transitions and the significance of c(3)-c(4) intermediate forms of photosynthesis in MolluginaceaePascal-Antoine Christin, Tammy L Sage, Erika J Edwards, et al.Journal of Experimental Botany|October 16, 2015
How can we make plants grow faster? A source-sink perspective on growth rateAngela C White, Alistair Rogers, Mark Rees, et al.The New Phytologist|April 30, 2026
C4 photosynthetic anatomy is associated with higher leaf hydraulic conductance and capacitance in Alloteropsis semialataYanmin Zhou, Luke T Dunning, Hui Liu, et al.Plant Direct|June 28, 2019
Nutrient sink limitation constrains growth in two barley species with contrasting growth strategiesAngela C Burnett, Alistair Rogers, Mark Rees, et al.Plant, Cell & Environment|July 17, 2016
Carbon source-sink limitations differ between two species with contrasting growth strategiesAngela C Burnett, Alistair Rogers, Mark Rees, et al.Journal of Experimental Botany|September 27, 2014
From museums to genomics: old herbarium specimens shed light on a C3 to C4 transitionGuillaume Besnard, Pascal-Antoine Christin, Pierre-Jean G Malé, et al.Trends in Ecology & Evolution|July 4, 2015
Plant domestication through an ecological lensRubén Milla, Colin P Osborne, Martin M Turcotte, et al.Journal of Experimental Botany|January 23, 2017
Photosynthesis in C3-C4 intermediate Moricandia speciesUrte Schlüter, Andrea Bräutigam, Udo Gowik, et al.Annals of Botany|November 1, 2008
A molecular phylogeny of the genus Alloteropsis (Panicoideae, Poaceae) suggests an evolutionary reversion from C4 to C3 photosynthesisDouglas G Ibrahim, Terry Burke, Brad S Ripley, et al.Pageof 16