The nickel resistance determinant cloned from the enterobacterium Klebsiella oxytoca: conjugational transfer, expression, regulation and DNA homologies to various nickel-resistant bacteria
- 1 January 1995
- journal article
- research article
- Published by Springer Nature in BioMetals
- Vol. 8 (1) , 70-79
- https://doi.org/10.1007/bf00156161
Abstract
Klebsiella oxytoca strain CCUG 15788, isolated from a mineral oil emulsion tank in Göteborg, Sweden, was found to be nickel-resistant (tolerating 10 mm NiCl2 in non-complexing mineral-gluconate media; inducible resistance). The nickel resistance determinants were transferred by helper-assisted conjugation to various strains of Escherichia coli and Citrobacter freundii and expressed to between 5 and 10 mm NiCl2. A 4.3 kb HindIII fragment was cloned from the genomic DNA of K. oxytoca. Ligated into the vector pSUP202, the fragment caused constitutive nickel resistance (of up to 3 or 10 mm Ni2+) in various E. coli strains. After cloning into the broad host range vector pVDZ'2 the fragment even expressed low nickel resistance in the transconjugant of Alcaligenes eutrophus AE104. With the 4.3 kb HindIII fragment as a biotinylated DNA probe it was shown by DNA-DNA hybridization that the nickel resistance determinant resides on the chromosome of K. oxytoca and not on its circular plasmid pKO1 (160 kb) or linear plasmid pKO2 (50 kb). Nickel resistance strongly correlated with the presence of the 4.3 kb HindIII fragment in the transconjugants. No homologies were detected when the nickel resistance determinants of other well-known nickel-resistant bacteria, such as A. eutrophus CH34 or A. denitrificans 4a-2, were used as target DNA. Among the 60 strains examined, positive signals only appeared with the 3.1 kb DNA fragment from A. xylosoxydans 31A and the genomic DNA of two enterobacterial strains (5-1 and 5–5) isolated from nickel-rich soil in New Caledonia.Keywords
This publication has 16 references indexed in Scilit:
- Studies on transformation of Escherichia coli with plasmidsPublished by Elsevier ,2006
- The nik operon of Escherichia coli encodes a periplasmic binding‐protein‐dependent transport system for nickelMolecular Microbiology, 1993
- Resistance to cadmium, cobalt, zinc, and nickel in microbesPlasmid, 1992
- Construction and properties of a triprotein containing the high‐affinity nickel transporter of Alcaligenes eutrophusFEBS Letters, 1991
- Towards an understanding of the genetics of bacterial metal resistanceTrends in Biotechnology, 1991
- A set of cassettes and improved vectors for genetic and biochemical characterization of pseudomonas genesGene, 1987
- Improved M13 phage cloning vectors and host strains: nucleotide sequences of the M13mpl8 and pUC19 vectorsGene, 1985
- Fluorogenic assays for immediate confirmation of Escherichia coliApplied and Environmental Microbiology, 1982
- Chromosome transfer and R-prime formation by an RP4::mini-Mu derivative in Escherichia coli, Salmonella typhimurium, Klebsiella pneumoniae, and Proteus mirabilisPlasmid, 1982
- R Factors Mediate Resistance to Mercury, Nickel, and CobaltScience, 1967