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Direct detection of radicals in intact soybean nodules: presence of nitric oxide-leghemoglobin complexes C Mathieu, S Moreau, P Frendo, A Puppo, MJ Davies Free Radical Biology and Medicine 24 (7-8), 1242-1249, 1998 | 178 | 1998 |
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Reactive oxygen species, nitric oxide and glutathione: a key role in the establishment of the legume–Rhizobium symbiosis? D Hérouart, E Baudouin, P Frendo, J Harrison, R Santos, A Jamet, ... Plant physiology and biochemistry 40 (6-8), 619-624, 2002 | 162 | 2002 |
Glutathione and Homoglutathione Play a Critical Role in the Nodulation Process of Medicago truncatula P Frendo, J Harrison, C Norman, MJH Jiménez, G Van de Sype, ... Molecular Plant-Microbe Interactions 18 (3), 254-259, 2005 | 155 | 2005 |
Bean cyclophilin gene expression during plant development and stress conditions J Marivet, M Margis-Pinheiro, P Frendo, G Burkard Plant Molecular Biology 26, 1181-1189, 1994 | 148 | 1994 |
Heavy-metal-responsive genes in maize: identification and comparison of their expression upon various forms of abiotic stress L Didierjean, P Frendo, W Nasser, G Genot, J Marivet, G Burkard Planta 199, 1-8, 1996 | 135 | 1996 |
Redox changes during the legume–Rhizobium symbiosis C Chang, I Damiani, A Puppo, P Frendo Molecular Plant 2 (3), 370-377, 2009 | 130 | 2009 |
Glutathione Plays a Fundamental Role in Growth and Symbiotic Capacity of Sinorhizobium meliloti J Harrison, A Jamet, CI Muglia, G Van de Sype, OM Aguilar, A Puppo, ... Journal of Bacteriology 187 (1), 168-174, 2005 | 116 | 2005 |
Effects of abiotic stresses on cyclophilin gene expression in maize and bean and sequence analysis of bean cyclophilin cDNA J Marivet, P Frendo, G Burkard Plant Science 84 (2), 171-178, 1992 | 112 | 1992 |
Differential Regulation of Two Divergent Sinorhizobium meliloti Genes for HPII-Like Catalases during Free-Living Growth and Protective Role of Both Catalases … S Sigaud, V Becquet, P Frendo, A Puppo, D Hérouart Journal of bacteriology 181 (8), 2634-2639, 1999 | 107 | 1999 |
The legume root nodule: from symbiotic nitrogen fixation to senescence L Dupont, D Hérouart, G Alloing, J Hopkins, O Pierre, P Frendo, ... INTECH Open Access Publisher, 2012 | 100 | 2012 |
Hydrogen peroxide‐regulated genes in the Medicago truncatula–Sinorhizobium meliloti symbiosis E Andrio, D Marino, A Marmeys, MD de Segonzac, I Damiani, A Genre, ... New Phytologist 198 (1), 179-189, 2013 | 98 | 2013 |
NADPH recycling systems in oxidative stressed pea nodules: a key role for the NADP+-dependent isocitrate dehydrogenase D Marino, EM González, P Frendo, A Puppo, C Arrese-Igor Planta 225, 413-421, 2007 | 96 | 2007 |
A Medicago truncatula Homoglutathione Synthetase Is Derived from Glutathione Synthetase by Gene Duplication P Frendo, MJH Jiménez, C Mathieu, L Duret, D Gallesi, G Van de Sype, ... Plant Physiology 126 (4), 1706-1715, 2001 | 92 | 2001 |
Cloning and characterization of the katA gene of Rhizobium meliloti encoding a hydrogen peroxide-inducible catalase D Hérouart, S Sigaud, S Moreau, P Frendo, D Touati, A Puppo Journal of Bacteriology 178 (23), 6802-6809, 1996 | 88 | 1996 |
A novel type of thioredoxin dedicated to symbiosis in legumes F Alkhalfioui, M Renard, P Frendo, C Keichinger, Y Meyer, E Gelhaye, ... Plant Physiology 148 (1), 424-435, 2008 | 87 | 2008 |
(Homo)glutathione Deficiency Impairs Root-knot Nematode Development in Medicago truncatula F Baldacci-Cresp, C Chang, M Maucourt, C Deborde, J Hopkins, ... PLoS Pathogens 8 (1), e1002471, 2012 | 73 | 2012 |