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The New Phytologist|July 2, 2024
Identifying genomic regions associated with C4 photosynthetic activity and leaf anatomy in Alloteropsis semialataAhmed S Alenazi, Lara Pereira, Pascal-Antoine Christin, et al.Journal of Experimental Botany|March 12, 2011
C(4) eudicots are not younger than C(4) monocotsPascal-Antoine Christin, Colin P Osborne, Rowan F Sage, et al.Journal of Experimental Botany|February 3, 2018
Gene duplication and dosage effects during the early emergence of C4 photosynthesis in the grass genus AlloteropsisMatheus E Bianconi, Luke T Dunning, Jose J Moreno-Villena, et al.Genome Biology and Evolution|November 2, 2013
Parallel recruitment of multiple genes into c4 photosynthesisPascal-Antoine Christin, Susanna F Boxall, Richard Gregory, et al.Systematic Biology|November 30, 2013
Molecular dating, evolutionary rates, and the age of the grassesPascal-Antoine Christin, Elizabeth Spriggs, Colin P Osborne, et al.Journal of Experimental Botany|January 23, 2017
Traces of strong selective pressures in the genomes of C4 grassesPascal-Antoine ChristinThe New Phytologist|August 26, 2020
The morphogenesis of fast growth in plantsRuth N Wade, Patrick Seed, Eleanor McLaren, et al.The New Phytologist|March 12, 2015
Were Fertile Crescent crop progenitors higher yielding than other wild species that were never domesticated?Catherine Preece, Alexandra Livarda, Michael Wallace, et al.Functional Ecology|March 14, 2017
How did the domestication of Fertile Crescent grain crops increase their yields?Catherine Preece, Alexandra Livarda, Pascal-Antoine Christin, et al.Current Biology : CB|February 21, 2012
Adaptive evolution of C(4) photosynthesis through recurrent lateral gene transferPascal-Antoine Christin, Erika J Edwards, Guillaume Besnard, et al.Pageof 16