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Items Found: 18
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Your Search: (SUBJECT=Pseudomonas putida)
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An enclosed aquatic multispecies test system for testing microbial pest control agents with non-target species /
Assay for Detection and Enumeration of Genetically Engineered Microorganisms Which Is Based on the Activity of a Deregulated 2,4-Dichlorophenoxyacetate Monooxygenase.
Benzoate-Dependent Induction from the OP2 Operator-Promoter Region of the TOL pWWO in the Absence of Known Plasmid Regulatory Genes (Journal Version).
Biodegradation of Phenoxyacetic Acid in Soil by 'Pseudomonas putida' PP0301(pR0103), a Constitutive Degrader of 2,4-Dichlorophenoxyacetate.
Catalase and Superoxide Dismutase of Root-Colonizing Saprophytic Fluorescent Pseudomonads.
Characterization of 'Pseudomonas putida' Mutants Unable to Catabolize Benzoate: Cloning and Characterization of 'Pseudomonas' Genes Involved in Benzoate Catabolism and Isolation of a Chromosomal DNA Fragment Able to Substitute for xylS in Activation of the TOL Lower-Pathway Promoter.
Characterization of Catalase Activities in a Root-Colonizing Isolate of 'Pseudomonas putida' (Revised).
Expression of Degradative Genes of 'Pseudomonas putida' in 'Caulobacter crescentus'.
Genetic Analysis of the aggA Locus Involved in Agglutination and Adherence of 'Pseudomonas putida', a Beneficial Fluorescent Pseudomonad.
Genetic and Cell-Free Studies of PCB Biodegradation in 'Pseudomonas putida' LB400.
Influence of Root Colonizing Bacteria on the Defense Responses of Bean.
Performance of an Aquatic Multispecies System in Evaluating the Effects of a Model Microbial Pest Control Agent on Nontarget Organisms.
Proteins from Eight Eukaryotic Cytochrome P-450 Families Share a Segmented Region of Sequence Similarity.
Recruitment of tft and clc Biodegradative Pathway Genes: Modes of Evolution.
Structure-Activity Relationships in Microbial Transformation of Phenols.
Survival and Degradative Capacity of 'Pseudomonas putida' Induced or Constitutively Expressing Plasmid-Mediated Degradation of 2,4-Dichlorophenoxyacetate (TFD) in Soil.
Trichloroethylene Metabolism by Microorganisms That Degrade Aromatic Compounds.
Use of a Novel Plasmid to Monitor the Fate of a Genetically Engineered 'Pseudomonas putida' Strain.
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