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Frontiers in Plant Science|August 2, 2018
Impact of Plant Peptides on Symbiotic Nodule Development and FunctioningAttila Kereszt, Peter Mergaert, Jesús Montiel, et al.
Nature|June 28, 2002
A receptor kinase gene regulating symbiotic nodule developmentGabriella Endre, Attila Kereszt, Zoltán Kevei, et al.
Molecular Plant-Microbe Interactions : MPMI|February 16, 2022
The <i>Medicago truncatula IEF</i> Gene Is Crucial for the Progression of Bacterial Infection During SymbiosisSzilárd Kovács, Ernő Kiss, Sándor Jenei, et al.
International Journal of Molecular Sciences|February 11, 2023
Enhanced Antibacterial Activity of Substituted Derivatives of NCR169C PeptideDian H O Howan, Sándor Jenei, János Szolomajer, et al.
Plant Physiology|February 21, 2019
Independent Regulation of Symbiotic Nodulation by the SUNN Negative and CRA2 Positive Systemic PathwaysCarole Laffont, Emeline Huault, Pierre Gautrat, et al.
Environmental Microbiology|August 27, 2014
A vapBC-type toxin-antitoxin module of Sinorhizobium meliloti influences symbiotic efficiency and nodule senescence of Medicago sativaJustine Lipuma, Gyöngyi Cinege, Monica Bodogai, et al.
Molecular Genetics and Genomics : MGG|November 8, 2005
Significant microsynteny with new evolutionary highlights is detected between Arabidopsis and legume model plants despite the lack of macrosyntenyZoltán Kevei, Andrea Seres, Attila Kereszt, et al.
Current Research in Microbial Sciences|January 19, 2026
A plant-derived antimicrobial peptide with multiple mechanisms of action exhibiting antibacterial and antibiofilm activities comparable to or superior to polymyxin BMohamad Anas Al Bouni, Rui M Lima, Sándor Jenei, et al.
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