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Cells|April 9, 2014
Cellular Stress Following Water Deprivation in the Model Legume Lotus japonicusMarco Betti, Carmen Pérez-Delgado, Margarita García-Calderón, et al.The New Phytologist|August 28, 2010
Deficiency in plastidic glutamine synthetase alters proline metabolism and transcriptomic response in Lotus japonicus under drought stressPedro Díaz, Marco Betti, Diego H Sánchez, et al.Journal of Experimental Botany|July 24, 2023
Photorespiration: regulation and new insights on the potential role of persulfidationAngeles Aroca, Inmaculada García-Díaz, Margarita García-Calderón, et al.Journal of Structural Biology|August 4, 2006
The three-dimensional structure of an eukaryotic glutamine synthetase: functional implications of its oligomeric structureOscar Llorca, Marco Betti, José M González, et al.Redox Report : Communications in Free Radical Research|August 22, 2002
Response to oxidative stress as a welfare parameter in swineGianfranco Brambilla, Cinzia Civitareale, Alfredo Ballerini, et al.Physiologia Plantarum|December 26, 2023
Mutation of MYB36 affects isoflavonoid metabolism, growth, and stress responses in Lotus japonicusMaría Dolores Monje-Rueda, Peter Pal'ove-Balang, Kristina Trush, et al.Biochemical and Biophysical Research Communications|October 3, 2006
Structural and functional properties of lengsin, a pseudo-glutamine synthetase in the transparent human lensFrancesca Grassi, Nadia Moretto, Claudio Rivetti, et al.BMC Genomics|October 14, 2017
Genes for asparagine metabolism in Lotus japonicus: differential expression and interconnection with photorespirationMargarita García-Calderón, Carmen M Pérez-Delgado, Alfredo Credali, et al.Plant Biotechnology Journal|March 24, 2026
Disruption of Asparagine Synthetase Is Associated to Increased Biomass in Lotus japonicusSara Rosa-Téllez, Margarita García-Calderón, David Barbosa Medeiros, et al.Journal of Medicinal Chemistry|December 10, 2016
Design, Synthesis, and Pharmacological Characterization of 2-(2-Furanyl)thiazolo[5,4-d]pyrimidine-5,7-diamine Derivatives: New Highly Potent A2A Adenosine Receptor Inverse Agonists with Antinociceptive ActivityFlavia Varano, Daniela Catarzi, Fabrizio Vincenzi, et al.Pageof 5