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Molecular Plant-Microbe Interactions : MPMI|February 3, 2000
Specific binding sites for an antifungal plant defensin from Dahlia (Dahlia merckii) on fungal cells are required for antifungal activityK Thevissen, R W Osborn, D P Acland, et al.Plant Physiology|February 1, 1988
Datura stramonium Agglutinin : Location in the Seed and Release upon ImbibitionW F Broekaert, D Lambrechts, J P Verbelen, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|October 31, 2013
A molecular method for S-allele identification in apple based on allele-specific PCRG A Janssens, I J Goderis, W F Broekaert, et al.Plant Physiology|June 1, 1985
Isolation and Partial Characterization of a New Lectin from Seeds of the Greater Celandine (Chelidonium majus)W J Peumans, M De Ley, H M Stinissen, et al.Current Opinion in Immunology|January 13, 2001
The complexity of disease signaling in ArabidopsisB P Thomma, I A Penninckx, W F Broekaert, et al.Planta|August 26, 1998
Evidence that the role of plant defensins in radish defense responses is independent of salicylic acidF R Terras, I A Penninckx, I J Goderis, et al.Planta|November 7, 2013
Hevein: an antifungal protein from rubber-tree (Hevea brasiliensis) latexJ Van Parijs, W F Broekaert, I J Goldstein, et al.Plant Cell Reports|November 2, 2013
Agrobacterium-mediated transformation of apple (Malus x domestica Borkh.): an assessment of factors affecting regeneration of transgenic plantsA De Bondt, K Eggermont, I Penninckx, et al.Science (New York, N.Y.)|September 8, 1989
A chitin-binding lectin from stinging nettle rhizomes with antifungal propertiesW F Broekaert, J VAN Parijs, F Leyns, et al.Archives of Biochemistry and Biophysics|August 15, 1986
Carbohydrate binding properties of the stinging nettle (Urtica dioica) rhizome lectinN Shibuya, I J Goldstein, J A Shafer, et al.Pageof 6