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Cited by
Molecular basis of plant growth promotion and biocontrol by rhizobacteria
GV Bloemberg, BJJ Lugtenberg
Current opinion in plant biology 4 (4), 343-350, 2001
[6] Genetic approaches to study of biofilms
GA O'Toole, LA Pratt, PI Watnick, DK Newman, VB Weaver, R Kolter
Methods in enzymology 310, 91-109, 1999
Microbe–plant interactions: principles and mechanisms
BJJ Lugtenberg, TFC Chin-A-Woeng, GV Bloemberg
Antonie Van Leeuwenhoek 81 (1-4), 373-383, 2002
Simultaneous Imaging of Pseudomonas fluorescens WCS365 Populations Expressing Three Different Autofluorescent Proteins in the Rhizosphere: New …
GV Bloemberg, AHM Wijfjes, GEM Lamers, N Stuurman, BJJ Lugtenberg
Molecular Plant-Microbe Interactions 13 (11), 1170-1176, 2000
Flagella of a plant-growth-stimulating Pseudomonas fluorescens strain are required for colonization of potato roots.
LA De Weger, CI Van der Vlugt, AHM Wijfjes, PA Bakker, B Schippers, ...
Journal of bacteriology 169 (6), 2769-2773, 1987
Plant growth promoting rhizobacteria (PGPR): prospects for new inoculants
LM Nelson
Crop management 3 (1), 1-7, 2004
The molecular basis of infection and nodulation by rhizobia: the ins and outs of sympathogenesis
HP Spaink
Annual review of phytopathology 33 (1), 345-368, 1995
Cell and molecular biology of Rhizobium-Plant
M Schultze, É Kondorosi, P Ratet, M Buiré, Á Kondorosi
International review of cytology 156, 1-75, 1994
The structures and biological activities of the lipo-oligosaccharide nodulation signals produced by type I and II strains of Bradyrhizobium japonicum.
RW Carlson, J Sanjuan, UR Bhat, J Glushka, HP Spaink, AH Wijfjes, ...
Journal of Biological Chemistry 268 (24), 18372-18381, 1993
Interactions in the Tomato Rhizosphere of Two Pseudomonas Biocontrol Strains with the Phytopathogenic Fungus Fusarium oxysporum f. sp. radicis-lycopersici
A Bolwerk, AL Lagopodi, AHM Wijfjes, GEM Lamers, TFC Chin-A-Woeng, ...
Molecular Plant-Microbe Interactions 16 (11), 983-993, 2003
Use of green fluorescent protein color variants expressed on stable broad-host-range vectors to visualize rhizobia interacting with plants
N Stuurman, CP Bras, HRM Schlaman, AHM Wijfjes, G Bloemberg, ...
Molecular Plant-Microbe Interactions 13 (11), 1163-1169, 2000
Isolation and identification of an EPS-producing Rhizobium strain from arid soil (Algeria): characterization of its EPS and the effect of inoculation on wheat rhizosphere soil …
Y Kaci, A Heyraud, M Barakat, T Heulin
Research in Microbiology 156 (4), 522-531, 2005
The sss Colonization Gene of the Tomato-Fusarium oxysporum f. sp. radicis-lycopersici Biocontrol Strain Pseudomonas fluorescens WCS365 Can Improve Root …
LC Dekkers, IHM Mulders, CC Phoelich, TFC Chin-A-Woeng, AHM Wijfjes, ...
Molecular plant-microbe interactions 13 (11), 1177-1183, 2000
Structural identification of metabolites produced by the NodB and NodC proteins of Rhizobium leguminosarum
HP Spaink, AHM Wijfjes, KMGM der van Drift, J Haverkamp, ...
Molecular microbiology 13 (5), 821-831, 1994
Benchmarking the catma microarray. a novel tool forarabidopsis transcriptome analysis
J Allemeersch, S Durinck, R Vanderhaeghen, P Alard, R Maes, K Seeuws, ...
Plant physiology 137 (2), 588-601, 2005
Chin-A-Woeng TFC
LC Dekkers, IHM Mulders, CC Phoelich
Wijfjes AHM, Lugtenberg BJJ, 1177-1183, 2000
Chin-A-Woeng TFC, Lugtenberg BJJ, Bloemberg GV (2003) Interactions in the tomato rhizosphere of two Pseudomonas biocontrol strains with the phytopathogenic fungus Fusarium …
A Bolwerk, AL Lagopodi, AHM Wijfjes, GEM Lamers
Mol Plant Microbe Interact 11, 983-993, 0
Rhizobium NodI and NodJ proteins play a role in the efficiency of secretion of lipochitin oligosaccharides.
HP Spaink, AH Wijfjes, BJ Lugtenberg
Journal of Bacteriology 177 (21), 6276-6281, 1995
An important developmental role for oligosaccharides during early embryogenesis of cyprinid fish
J Bakkers, CE Semino, H Stroband, JW Kijne, PW Robbins, HP Spaink
Proceedings of the National Academy of Sciences 94 (15), 7982-7986, 1997
Role of Chemotaxis Toward Fusaric Acid in Colonization of Hyphae of Fusarium oxysporum f. sp. radicis-lycopersici by Pseudomonas fluorescens WCS365
S de Weert, I Kuiper, EL Lagendijk, GEM Lamers, BJJ Lugtenberg
Molecular Plant-Microbe Interactions 17 (11), 1185-1191, 2004
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