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Journal of Agricultural and Food Chemistry|January 31, 2023
Impact of Assimilable Nitrogen Supplementation on <i>Saccharomyces cerevisiae</i> Metabolic Response and Aromatic Profile of Moschofilero WineDespina Lola, Chrysanthi Kalloniati, Maria Dimopoulou, et al.Plant Molecular Biology|August 10, 2006
Spatial and temporal organization of sucrose metabolism in Lotus japonicus nitrogen-fixing nodules suggests a role for the elusive alkaline/neutral invertaseEmmanouil Flemetakis, Rodica C Efrose, Thomas Ott, et al.Plant, Cell & Environment|August 26, 2025
Revealing the Role of Actinorhizal Symbioses in Ecosystem Nitrogen DynamicsBin Hu, Zhenshan Liu, Tong Peng, et al.Protein and Peptide Letters|June 24, 2017
Functional and Catalytic Characterization of the Detoxifying Enzyme Haloalkane Dehalogenase from Rhizobium leguminosarumNikolaos Georgakis, Evangelia Chronopoulou, Maria Anna Gad, et al.Environmental Pollution (Barking, Essex : 1987)|December 2, 2023
Antagonistic effect of mercury and excess nitrogen exposure reveals provenance-specific phytoremediation potential of black locust-rhizobia symbiosisRui Liu, Bin Hu, Emmanouil Flemetakis, et al.Biochimica Et Biophysica Acta|August 23, 2003
A Lotus japonicus beta-type carbonic anhydrase gene expression pattern suggests distinct physiological roles during nodule developmentEmmanouil Flemetakis, Maria Dimou, Daniela Cotzur, et al.Molecular Plant-Microbe Interactions : MPMI|June 16, 2009
Absence of symbiotic leghemoglobins alters bacteroid and plant cell differentiation during development of Lotus japonicus root nodulesThomas Ott, John Sullivan, Euan K James, et al.Applied Microbiology and Biotechnology|April 19, 2023
In planta interactions of a novel bacteriophage against Pseudomonas syringae pv. tomatoDimitrios Skliros, Polyxeni Papazoglou, Danai Gkizi, et al.Applied Microbiology and Biotechnology|January 17, 2024
Global omics study of Tetraselmis chuii reveals time-related metabolic adaptations upon oxidative stressAikaterini Koletti, Dimitrios Skliros, Chrysanthi Kalloniati, et al.Journal of Experimental Botany|May 20, 2003
A sucrose transporter, LjSUT4, is up-regulated during Lotus japonicus nodule developmentEmmanouil Flemetakis, Maria Dimou, Daniela Cotzur, et al.Pageof 9