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Plant Direct|June 11, 2025
BdNRT2A and BdNRT3.2 Are the Major Components of the High-Affinity Nitrate Transport System in Brachypodium distachyonLaure C David, Mathilde Grégoire, Patrick Berquin, et al.Plant Physiology|July 6, 2016
A Brachypodium UDP-Glycosyltransferase Confers Root Tolerance to Deoxynivalenol and Resistance to Fusarium InfectionJean-Claude Pasquet, Valentin Changenet, Catherine Macadré, et al.Genome Biology|February 28, 2008
UTILLdb, a Pisum sativum in silico forward and reverse genetics toolMarion Dalmais, Julien Schmidt, Christine Le Signor, et al.Proceedings of the National Academy of Sciences of the United States of America|April 1, 2024
Analysis of pea mutants reveals the conserved role of FRUITFULL controlling the end of flowering and its potential to boost yieldIrene Martínez-Fernández, Chloe Fourquin, Donna Lindsay, et al.International Journal of Molecular Sciences|April 4, 2019
Structural Variations in LysM Domains of LysM-RLK PsK1 May Result in a Different Effect on Pea⁻Rhizobial Symbiosis DevelopmentAnna N Kirienko, Nadezhda A Vishnevskaya, Anna B Kitaeva, et al.Biotechnology for Biofuels|July 25, 2019
Inactivation of LACCASE8 and LACCASE5 genes in Brachypodium distachyon leads to severe decrease in lignin content and high increase in saccharification yield without impacting plant integrityPhilippe Le Bris, Yin Wang, Clément Barbereau, et al.Nature Plants|November 28, 2018
Unleashing meiotic crossovers in cropsDelphine Mieulet, Gregoire Aubert, Cecile Bres, et al.Plant Physiology|March 11, 2015
LACCASE5 is required for lignification of the Brachypodium distachyon CulmYin Wang, Oumaya Bouchabke-Coussa, Philippe Lebris, et al.The New Phytologist|June 5, 2024
afila, the origin and nature of a major innovation in the history of pea breedingNadim Tayeh, Julie M I Hofer, Grégoire Aubert, et al.Planta|July 26, 2018
Role of a receptor-like kinase K1 in pea Rhizobium symbiosis developmentAnna N Kirienko, Yuri B Porozov, Nikita V Malkov, et al.Pageof 4