scholarly article | Q13442814 |
P50 | author | Alessandra Polissi | Q28359650 |
P2093 | author name string | E Galli | |
G Bertoni | |||
G Bestetti | |||
G Dehò | |||
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Labeling deoxyribonucleic acid to high specific activity in vitro by nick translation with DNA polymerase I | Q27860885 | ||
State of prophage Mu DNA upon induction | Q35040998 | ||
Characterization of five genes in the upper-pathway operon of TOL plasmid pWW0 from Pseudomonas putida and identification of the gene products | Q36181865 | ||
Regulator and enzyme specificities of the TOL plasmid-encoded upper pathway for degradation of aromatic hydrocarbons and expansion of the substrate range of the pathway | Q36184658 | ||
Catabolism of pseudocumene and 3-ethyltoluene by Pseudomonas putida (arvilla) mt-2: evidence for new functions of the TOL (pWWO) plasmid | Q36319607 | ||
Molecular and functional analysis of the TOL plasmid pWWO from Pseudomonas putida and cloning of genes for the entire regulated aromatic ring meta cleavage pathway | Q36382584 | ||
Isolation of large bacterial plasmids and characterization of the P2 incompatibility group plasmids pMG1 and pMG5 | Q36469957 | ||
Metabolism of benzoate and the methylbenzoates by Pseudomonas putida (arvilla) mt-2: evidence for the existence of a TOL plasmid | Q36760222 | ||
Nonessential region of bacteriophage P4: DNA sequence, transcription, gene products, and functions | Q36798247 | ||
Toluene transposons Tn4651 and Tn4653 are class II transposons | Q39948254 | ||
Gene organization of the first catabolic operon of TOL plasmid pWW53: production of indigo by the xylA gene product | Q39955807 | ||
Characterization of a novel TOL-like plasmid from Pseudomonas putida involved in 1,2,4-trimethylbenzene degradation | Q39956492 | ||
Gene order of the TOL catabolic plasmid upper pathway operon and oxidation of both toluene and benzyl alcohol by the xylA product | Q39959380 | ||
Naturally occurring TOL plasmids in Pseudomonas strains carry either two homologous or two nonhomologous catechol 2,3-oxygenase genes. | Q39961609 | ||
Chromosomal location of TOL plasmid DNA in Pseudomonas putida | Q39961851 | ||
Evolutionary conservation of genes coding for meta pathway enzymes within TOL plasmids pWW0 and pWW53. | Q39964378 | ||
Transposon mutagenesis analysis of meta-cleavage pathway operon genes of the TOL plasmid of Pseudomonas putida mt-2 | Q39965774 | ||
Transposon Tn5 specifies streptomycin resistance in Rhizobium spp | Q39968434 | ||
Molecular cloning of gene xylS of the TOL plasmid: evidence for positive regulation of the xylDEGF operon by xylS. | Q39971204 | ||
TOL plasmid pWW15 contains two nonhomologous, independently regulated catechol 2,3-oxygenase genes | Q39980772 | ||
Physical mapping of TOL plasmids pWWO and pND2 and various R plasmid-TOL derivatives from Pseudomonas spp. | Q39988248 | ||
Regulation of the degradative pathway enzymes coded for by the TOL plasmid (pWWO) from Pseudomonas putida mt-2 | Q39990573 | ||
Molecular sizes and relationships of TOL plasmids in Pseudomonas. | Q40034150 | ||
Metabolism of toluene and xylenes by Pseudomonas (putida (arvilla) mt-2: evidence for a new function of the TOL plasmid | Q40036071 | ||
A restriction enzyme cleavage map of Tn5 and location of a region encoding neomycin resistance | Q40290146 | ||
16 Plasmids of Escherichia coli as cloning vectors | Q40293065 | ||
Evolutionary relationships between catabolic pathways for aromatics: conservation of gene order and nucleotide sequences of catechol oxidation genes of pWW0 and NAH7 plasmids | Q48333815 | ||
Complete nucleotide sequence of the metapyrocatechase gene on the TOI plasmid of Pseudomonas putida mt-2. | Q48399500 | ||
Molecular analysis of regulatory and structural xyl genes of the TOL plasmid pWW53-4. | Q54407606 | ||
Genetic analysis of a transposon carrying toluene degrading genes on a TOL plasmid pWW0. | Q54758580 | ||
The meta cleavage operon of TOL degradative plasmid pWW0 comprises 13 genes. | Q55054733 | ||
Regulatory circuits controlling transcription of TOL plasmid operon encoding meta-cleavage pathway for degradation of alkylbenzoates by Pseudomonas | Q68701026 | ||
Identification and characterization of Tn4653, a transposon covering the toluene transposon Tn4651 on TOL plasmid pWW0 | Q69848365 | ||
Molecular relationships between Pseudomonas INC P-9 degradative plasmids TOL, NAH, and SAL | Q70172096 | ||
Physical and functional mapping of two cointegrate plasmids derived from RP4 and TOL plasmid pDK1 | Q70267259 | ||
Molecular characterization of a plasmid from Pseudomonas fluorescens involved in styrene degradation | Q70516335 | ||
Construction of a partial diploid for the degradative pathway encoded by the TOL plasmid (pWWO) from Pseudomonas putida mt-2: evidence for the positive nature of the regulation by the xyIR gene | Q71976867 | ||
Rapid Methods for the Study of both Stable and Unstable Plasmids in Pseudomonas | Q72920858 | ||
P433 | issue | 11 | |
P921 | main subject | Pseudomonas putida | Q2738168 |
P304 | page(s) | 6355-6362 | |
P577 | publication date | 1990-11-01 | |
P1433 | published in | Journal of Bacteriology | Q478419 |
P1476 | title | Genetic analysis of chromosomal operons involved in degradation of aromatic hydrocarbons in Pseudomonas putida TMB | |
P478 | volume | 172 |
Q35592538 | Catabolite-mediated mutations in alternate toluene degradative pathways in Pseudomonas putida |
Q35874790 | Comparison of bacterial and archaeal communities in depth-resolved zones in an LNAPL body |
Q30977509 | Identification of four structural genes and two putative promoters necessary for utilization of naphthalene, phenanthrene, fluoranthene by Sphingomonas paucimobilis var. EPA505. |
Q48056879 | Organisation of the tmb catabolic operons of Pseudomonas putida TMB and evolutionary relationship with the xyl operons of the TOL plasmid pWW0. |
Q45161937 | Physiological and chemical gradients in a Pseudomonas putida 54G biofilm degrading toluene in a flat plate vapor phase bioreactor |
Q35692599 | Physiological properties of a Pseudomonas strain which grows with p-xylene in a two-phase (organic-aqueous) medium. |
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