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Plant Physiology|May 2, 2006
Aging in legume symbiosis. A molecular view on nodule senescence in Medicago truncatulaWillem Van de Velde, Juan Carlos Pérez Guerra, Annick De Keyser, et al.Journal of Bacteriology|June 12, 2019
From Intracellular Bacteria to Differentiated Bacteroids: Transcriptome and Metabolome Analysis in Aeschynomene Nodules Using the Bradyrhizobium sp. Strain ORS285 bclA MutantFlorian Lamouche, Anaïs Chaumeret, Ibtissem Guefrachi, et al.The ISME Journal|January 21, 2015
Alnus peptides modify membrane porosity and induce the release of nitrogen-rich metabolites from nitrogen-fixing FrankiaLorena Carro, Petar Pujic, Nicole Alloisio, et al.Plant Physiology|July 5, 2008
Seven in absentia proteins affect plant growth and nodulation in Medicago truncatulaGriet Den Herder, Annick De Keyser, Riet De Rycke, et al.Mbio|February 21, 2023
Dual-Uptake Mode of the Antibiotic Phazolicin Prevents Resistance Acquisition by Gram-Negative BacteriaDmitrii Y Travin, Romain Jouan, Armelle Vigouroux, et al.The Plant Cell|December 25, 2007
3-hydroxy-3-methylglutaryl coenzyme a reductase 1 interacts with NORK and is crucial for nodulation in Medicago truncatulaZoltán Kevei, Géraldine Lougnon, Peter Mergaert, et al.Environmental Microbiology|November 3, 2015
Sinorhizobium fredii HH103 bacteroids are not terminally differentiated and show altered O-antigen in nodules of the Inverted Repeat-Lacking Clade legume Glycyrrhiza uralensisJuan C Crespo-Rivas, Ibtissem Guefrachi, Kenny C Mok, et al.Molecular Plant-Microbe Interactions : MPMI|June 25, 2015
Bradyrhizobium BclA Is a Peptide Transporter Required for Bacterial Differentiation in Symbiosis with Aeschynomene LegumesIbtissem Guefrachi, Olivier Pierre, Tatiana Timchenko, et al.Plos Biology|October 13, 2011
Protection of Sinorhizobium against host cysteine-rich antimicrobial peptides is critical for symbiosisAndreas F Haag, Mikhail Baloban, Monica Sani, et al.Proceedings of the National Academy of Sciences of the United States of America|March 12, 2025
Sinorhizobium meliloti FcrX coordinates cell cycle and division during free-living growth and symbiosis by a ClpXP-dependent mechanismSara Dendene, Shuanghong Xue, Roza Mohammedi, et al.Pageof 9