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Pseudomonas fluorescens
Known as:
Bacillus fluorescens
, Bacterium fluorescen
, Bacillus fluorescens liquefaciens
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A species of obligatively aerobic, Gram negative, rod shaped bacteria in the phylum Proteobacteria. This species is motile, non spore forming, a…
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National Institutes of Health
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4 relations
CDISC SDTM Microorganism Terminology
Clinical Data Interchange Standards Consortium Terminology
aspects of radiation effects
physiological aspects
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Highly Cited
2017
Highly Cited
2017
Title Genome sequence reveals that Pseudomonas fluorescens F 113 possesses a large and diverse array of systems for rhizosphere function and host interaction
M. Redondo-Nieto
,
M. Barret
,
+12 authors
R. Rivilla
2017
Corpus ID: 7594189
Background: Pseudomonas fluorescens F113 is a plant growth-promoting rhizobacterium (PGPR) isolated from the sugar-beet…
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2007
2007
Statistical evaluation of medium components by Plackett-Burman experimental design and kinetic modeling of lipase production by Pseudomonas fluorescens
A. Rajendran
,
M. Thirugnanam
,
V. Thangavelu
2007
Corpus ID: 56305077
The evaluation of medium components for lipase production by Pseudomonas fluorescens in submerged batch fermentation was studied…
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Highly Cited
1997
Highly Cited
1997
Selection of Chickpea-Rhizosphere-Competent Pseudomonas fluorescens NBRI1303 Antagonistic to Fusarium oxysporum f. sp. ciceri, Rhizoctonia bataticola and Pythium sp.
C. Nautiyal
Current Microbiology
1997
Corpus ID: 21508802
Abstract. A procedure that consumes less screening time was developed for screening chickpea rhizosphere-competent bacteria for…
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Highly Cited
1996
Highly Cited
1996
A cytochrome c biogenesis gene involved in pyoverdine production in Pseudomonas fluorescens ATCC 17400
A. Gaballa
,
N. Koedam
,
P. Cornelis
Molecular Microbiology
1996
Corpus ID: 34310280
Pseudomonas fluorescens ATCC 17400 produces pyoverdine under iron‐limiting conditions. A Tn5 mutant, 2G11, produced lower amounts…
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1996
1996
Analysis of cumene (isopropylbenzene) degradation genes from Pseudomonas fluorescens IP01
H. Habe
,
K. Kasuga
,
H. Nojiri
,
H. Yamane
,
T. Omori
Applied and Environmental Microbiology
1996
Corpus ID: 35347185
We obtained the DNA fragments encoding 2-hydroxy-6-oxo-7-methylocta-2,4-dienoic acid (HOMODA) hydrolase in the cumene…
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Highly Cited
1992
Highly Cited
1992
Luminometric measurement of population activity of genetically modified Pseudomonas fluorescens in the soil.
A. Meikle
,
K. Killham
,
J. Prosser
,
L. Glover
FEMS Microbiology Letters
1992
Corpus ID: 30195516
Genetically modified cells of Pseudomonas fluorescens, chromosomally marked with genes for bioluminescence, were inoculated into…
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Highly Cited
1985
Highly Cited
1985
Population Dynamics of Soil Pseudomonads in the Rhizosphere of Potato (Solanum tuberosum L.)
J. Loper
,
Caryn Haack
,
M. Schroth
Applied and Environmental Microbiology
1985
Corpus ID: 19731921
Rhizosphere population dynamics of seven Pseudomonas fluorescens and Pseudomonas putida strains isolated from rhizospheres of…
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1975
1975
Effect of growth temperature on the lipids of Pseudomonas fluorescens.
C. Gill
Journal of General Microbiology
1975
Corpus ID: 46319005
Pseudomonas fluorescens was grown in co ntinuous culture with glucose or NH4+ as the growth-limiting substrate. The total amount…
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Highly Cited
1967
Highly Cited
1967
THE AMINO ACID SEQUENCE OF PSEUDOMONAS FLUORESCENS AZURIN.
R. Ambler
,
L. H. Brown
Journal of Molecular Biology
1967
Corpus ID: 40515609
The amino acid sequence of Pseudomonas fluorescens azurin has been determined. The protein consists of a single peptide chain of…
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Highly Cited
1953
Highly Cited
1953
A Cytochrome Peroxidase from Pseudomonas fluorescens
H. Lenhoff
,
N. Kaplan
Nature
1953
Corpus ID: 853054
A CRUDE extract of Pseudomonas fluorescens was found to oxidize a reduced dye, 2,6-dichlorobenz-enoneindo-3′-chlorophenol. The…
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