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3,4-dimethylphenol

National Institutes of Health

Papers overview

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Highly Cited
2006
Highly Cited
2006
The design of a new tyrosinase biosensor with improved stability and sensitivity is reported. The biosensor design is based on… Expand
Highly Cited
2006
Highly Cited
2006
A whole-cell recombinant bacterial sensor for the detection of phenolic compounds was constructed and used for the analysis of… Expand
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Highly Cited
2004
Highly Cited
2004
SummaryThe phenol-degrading strain Pseudomonas putida EKII was isolated from a soil enrichment culture and utilized phenol up to… Expand
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Highly Cited
1996
Highly Cited
1996
In order to study the toluene and o-xylene catabolic genes of Pseudomonas stutzeri OX1, a genomic library was constructed. A 28… Expand
Highly Cited
1994
Highly Cited
1994
Plasmid pRO1957, which contains a 26.5-kb fragment from the chromosome of Pseudomonas pickettii PKO1, allows P. aeruginosa PAO1… Expand
Highly Cited
1992
Highly Cited
1992
The meta-cleavage pathway for catechol is one of the major routes for the microbial degradation of aromatic compounds… Expand
Highly Cited
1989
Highly Cited
1989
Pseudomonas strain CF600 is able to utilize phenol and 3,4-dimethylphenol as sole carbon and energy source. We demonstrate that… Expand
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Highly Cited
1987
Highly Cited
1987
A Pseudomonas stutzeri strain capable of growing on o-xylene was isolated from enrichment cultures. The organism grew on 2,3- and… Expand
Highly Cited
1985
Highly Cited
1985
The microbial transformations of dimethyl- and dichlorobenzenes have been studied in laboratory aquifer columns simulating… Expand
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Highly Cited
1970
Highly Cited
1970
Abstract The hydroxylation of benzene, toluene, ethylbenzene, styrene, cumene, o -xylene, m -xylene, p -xylene, p -cymene… Expand