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Applied and Environmental Microbiology|April 1, 1995
Use of tn5 mutants to assess the role of the dissimilatory nitrite reductase in the competitive abilities of two pseudomonas strains in soilL Philippot, A Clays-Josserand, R LensiThe New Phytologist|April 20, 2021
Delayed NH3 and N2 O uptake by maize leavesG L Grundmann, R Lensi, A ChalametApplied and Environmental Microbiology|May 1, 1995
Influence of Two Plant Species (Flax and Tomato) on the Distribution of Nitrogen Dissimilative Abilities within Fluorescent Pseudomonas sppA Clays-Josserand, P Lemanceau, L Philippot, et al.Applied and Environmental Microbiology|August 31, 2000
Role of respiratory nitrate reductase in ability of Pseudomonas fluorescens YT101 to colonize the rhizosphere of maizeJ F Ghiglione, F Gourbiere, P Potier, et al.Proceedings. Biological Sciences|April 29, 2000
Relationships between root density of the African grass Hyparrhenia diplandra and nitrification at the decimetric scale: an inhibition-stimulation balance hypothesisJ C Lata, K Guillaume, V Degrange, et al.Journal of Bacteriology|August 10, 1999
Disruption of narG, the gene encoding the catalytic subunit of respiratory nitrate reductase, also affects nitrite respiration in Pseudomonas fluorescens YT101J F Ghiglione, L Philippot, P Normand, et al.Journal of Microbiological Methods|June 5, 2004
Immunological method for direct assessment of the functionality of a denitrifying strain of Pseudomonas fluorescens in soilP-A Maron, A Richaume, P Potier, et al.Biochimica Et Biophysica Acta|February 28, 1997
Purification of the dissimilative nitrate reductase of Pseudomonas fluorescens and the cloning and sequencing of its corresponding genesL Philippot, A Clays-Josserand, R Lensi, et al.Journal of Applied Microbiology|January 22, 2005
Link between spatial structure of microbial communities and degradation of a complex mixture of volatile organic compounds in peat biofiltersN Khammar, L Malhautier, V Degrange, et al.Pageof 1