DNA Probe-Mediated Detection of Resistant Bacteria from Soils Highly Polluted by Heavy Metals
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Summary
Findings indicated a certain correlation between the heavy-metal content in contaminated soils and the presence of heavy- metal-resistant megaplasmid-bearing A. eutrophus strains.
- Type
- article
- Published
- 1990-05-01
- Cited by
- 162
- References
- 21
- Access
- Open access
- OpenAlex
- https://openalex.org/W1920528242
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:39609440
Keywords
Bacteria, Zinc, Plasmid, Alcaligenes, Contamination
References
- Testing for bacterial resistance to arsenic in monitoring well water by the direct viable counting method
- GROWTH AND HYDROGENASE ACTIVITY OF A NEW BACTERIUM, HYDROGENOMONAS FACILIS
- Effect of Metal-Rich Sewage Sludge Application on the Bacterial Communities of Grasslands
- Preparation of a DNA gene probe for detection of mercury resistance genes in gram-negative bacterial communities
- Plasmid-determined inducible efflux is responsible for resistance to cadmium, zinc, and cobalt in Alcaligenes eutrophus
- Survival and detection of bacteria in an aquatic environment
- Cloning of plasmid genes encoding resistance to cadmium, zinc, and cobalt in Alcaligenes eutrophus CH34
- Rapid procedure for detection and isolation of large and small plasmids
- Alcaligenes eutrophus CH34 is a facultative chemolithotroph with plasmid-bound resistance to heavy metals
- Metal ion uptake by a plasmid-free metal-sensitive Alcaligenes eutrophus strain
- Plasmid pMOL28-encoded resistance to nickel is due to specific efflux
- Large plasmids governing multiple resistances to heavy metals: A genetic approach∗
- Expression and nucleotide sequence of a plasmid-determined divalent cation efflux system from Alcaligenes eutrophus.
- Detection of specific sequences among DNA fragments separated by gel electrophoresis.
- Application of DNA-DNA colony hybridization to the detection of catabolic genotypes in environmental samples
- Chromosome transfer and R-prime plasmid formation mediated by plasmid pULB113 (RP4::mini-Mu) in Alcaligenes eutrophus CH34 and Pseudomonas fluorescens 6.2
- Extrachromosomal inheritance controlling resistance to cadmium, cobalt, copper and zinc ions: evidence from curing in a Pseudomonas [proceedings].
- Chromosome Transfer andR-Prime Plasmid Formation Mediated byPlasmid pULB113(RP4::Mini-Mu) inAlcaligenes eutrophus CH34andPseudomonas fluorescens 6.2
Cited by
- Reverse Sample Genome Probing, a New Technique for Identification of Bacteria in Environmental Samples by DNA Hybridization, and Its Application to the Identification of Sulfate-Reducing Bacteria in Oil Field Samples
- Endophytes of Forest Trees
- Plasmid incidence in bacteria from agricultural and industrial soils
- Response of marine microbial communities to anthropogenic stress
- The impact of chromium contamination on soil heterotrophic and photosynthetic microorganisms
- Identification of a catabolic transposon, Tn4371, carrying biphenyl and 4-chlorobiphenyl degradation genes in Alcaligenes eutrophus A5
- A Selective Medium for the Isolation and Quantification of Bradyrhizobium japonicum and Bradyrhizobium elkanii Strains from Soils and Inoculants
- NATIVE CHROMIUM RESISTANT Staphylococci SPECIES FROM A FLY ASH DUMPING SITE IN SOUTH AFRICA HARBOR PLASMID pMOL28 DETERMINANTS
- Detection of heavy metal ion resistance genes in Gram-positive and Gram-negative bacteria isolated from a lead-contaminated site
- Isolation of environmental DNA from soil of oil-palm plantation and detection of prokaryotes employing dot blot hybridization
- Biogeochemical cycling of toxic metals in Lake Coeur d'Alene sediments
- Characterization of the inducible nickel and cobalt resistance determinant cnr from pMOL28 of Alcaligenes eutrophus CH34
- High-Level Nickel Resistance in Alcaligenes xylosoxydans 31A and Alcaligenes eutrophus KTO2
- Construction and characterization of heavy metal-resistant haloaromatic-degrading Alcaligenes eutrophus strains
- Electroporation of Alcaligenes eutrophus with (mega) plasmids and genomic DNA fragments
- Determinants Encoding Resistance to Several Heavy Metals in Newly Isolated Copper-Resistant Bacteria
- Heavy metal resistance by two bacteria strains isolated from a copper mine tailing in China
- Gene escape model: transfer of heavy metal resistance genes from Escherichia coli to Alcaligenes eutrophus on agar plates and in soil samples
- Distribución de los genes chrA en bacterias de origen nosocomial
- Theczc operon ofAlcaligenes eutrophus CH34: from resistance mechanism to the removal of heavy metals
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