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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.
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.
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