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Nucleic Acids Research|August 28, 2001
A critical evaluation of differential display as a tool to identify genes involved in legume nodulation: looking back and looking forwardS Lievens, S Goormachtig, M HolstersPlant, Cell & Environment|February 17, 2025
About How Nitrate Controls Nodulation: Will Soybean Spill the Bean?E Guillierme, K Gevaert, S Goormachtig, et al.Plant Molecular Biology|June 10, 1998
Patterns of ENOD40 gene expression in stem-borne nodules of Sesbania rostrataV Corich, S Goormachtig, S Lievens, et al.Planta|August 31, 1999
Chalcone reductase-homologous transcripts accumulate during development of stem-borne nodules on the tropical legume Sesbania rostrataS Goormachtig, S Lievens, S Herman, et al.Molecular Plant-Microbe Interactions : MPMI|April 1, 1997
Expression of cell cycle genes during Sesbania rostrata stem nodule developmentS Goormachtig, M Alves-Ferreira, M Van Montagu, et al.The Plant Cell|June 23, 1998
Srchi13, a novel early nodulin from Sesbania rostrata, is related to acidic class III chitinasesS Goormachtig, S Lievens, W Van de Velde, et al.Molecular Microbiology|July 1, 1993
Identification of nodSUIJ genes in Nod locus 1 of Azorhizobium caulinodans: evidence that nodS encodes a methyltransferase involved in Nod factor modificationD Geelen, P Mergaert, R A Geremia, et al.Proceedings of the National Academy of Sciences of the United States of America|October 15, 1998
Ethylene-mediated phenotypic plasticity in root nodule development on Sesbania rostrataM Fernandez-Lopez, S Goormachtig, M Gao, et al.Molecular Plant-Microbe Interactions : MPMI|November 1, 1995
Use of differential display to identify novel Sesbania rostrata genes enhanced by Azorhizobium caulinodans infectionS Goormachtig, M Valerio-Lepiniec, K Szczyglowski, et al.Plant Physiology|September 13, 2001
Srchi24, a chitinase homolog lacking an essential glutamic acid residue for hydrolytic activity, is induced during nodule development on Sesbania rostrataS Goormachtig, W Van de Velde, S Lievens, et al.Pageof 2