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Molecular Biology and Evolution|June 11, 2020
Lateral Gene Transfer Acts As an Evolutionary Shortcut to Efficient C4 BiochemistryChatchawal Phansopa, Luke T Dunning, James D Reid, 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.
Molecular Biology and Evolution|October 18, 2017
Highly Expressed Genes Are Preferentially Co-Opted for C4 PhotosynthesisJose J Moreno-Villena, Luke T Dunning, Colin P Osborne, et al.
Annals of Botany|July 9, 2023
Alloteropsis semialata as a study system for C4 evolution in grassesLara Pereira, Matheus E Bianconi, Colin P Osborne, et al.
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.
The New Phytologist|October 4, 2023
Lateral gene transfer generates accessory genes that accumulate at different rates within a grass lineagePauline Raimondeau, Matheus E Bianconi, Lara Pereira, 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.
Journal of Experimental Botany|January 23, 2017
Traces of strong selective pressures in the genomes of C4 grassesPascal-Antoine Christin
Evolution; International Journal of Organic Evolution|April 11, 2017
Introgression and repeated co-option facilitated the recurrent emergence of C4 photosynthesis among close relativesLuke T Dunning, Marjorie R Lundgren, Jose J Moreno-Villena, et al.
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