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Biomedical subjects

L K Dunican

Publications and source records attributed to L K Dunican.

18 recordsLinked to original sources

The 16s/23s ribosomal spacer region as a target for DNA probes to identify eubacteria.

Variable regions of the 16s ribosomal RNA have been frequently used as the target for DNA probes to identify microorganisms. In some situations, however, there is very little sequence variation observed between the 16s rRNA genes of closely related microorganisms. This study presents a general method to obtain species-specific probes using the spacer (intergenic) region between the 16s and 23s rRNA genes. The overall strategy is analogous to that which has previously been developed for the variable regions of the 16s rRNA genes. Sequence analysis of the 16s rRNA and 23s rRNA coding sequences flanking the spacer regions resulted in the design of PCR primers that can be used to amplify the spacer regions of a wide range of eubacteria. Sequencing the amplified spacer region then gives rise to the information that can be used to select specific DNA sequences for use as a DNA probe or for the generation of specific PCR primers to a microorganism of interest. In this study the approach to develop specific DNA markers for members of the genus Clostridium is described in detail. A specific DNA oligonucleotide probe and PCR primers have been designed for Clostridium perfringens that distinguish it from other organisms in the genus.

Bacteria

Electrotransfection of Escherichia coli with lambda gt10 DNA.

We have used electroporation to introduce lambda gt10 DNA into E. coli C600 (Electrotransfection). We obtained approximately 10(7) pfu (plaque forming units) per micrograms of lambda gt10 DNA. This frequency is 100-fold higher than the maximum reported for classical calcium chloride-induced transfection. We have also compared electrotransfection with in vitro packaging in cloning experiments using relatively small amounts (less than or equal to 10 ng) of DNA. Our results slow that electrotransfection can generate approximately 1000-fold more plaques than in vitro packaging at these concentrations.

Bacteriophage lambda

Indirect induction of a Staphylococcus aureus prophage by P11de a plasmid phage hybrid.

The ability to mediate indirect induction of staphylococcal prophages was found to be a property of the cryptic high frequency transducing phage P11de but not of three other phages tested. P11de is the product of a recombination between a P11 phage and a gamma plasmid. Irradiated P11de preparations could not induce prophage development in strains which contained either a P11 prophage or a gamma plasmid. The establishment of P11de in a strain was not, however, inhibited by the presence of a P11 prophage. It is inferred that the inhibition of indirect induction exerted by the resident P11 prophage occurs at a stage other than the establishment of the P11de replicon.

Plasmids

Transformation and physical properties of R-factor RP4 transferred from Escherichia coli to Rhizobium trifolii.

Transformation of R-factor RP4 specifying resistance to ampicillin, kanamycin, and tetracycline from Escherichia coli to Rhizobium trifolii is reported. Partially purified RP4 deoxyribonucleic acid (DNA) of the donor strain E. coli J5-3 that carried the R-factor was prepared by the lysozyme-ethylenediaminetetraacetic acid-Triton X-100 procedure and was used in transformation experiments with R. trifolii as recipient. The frequency of transformation of the R-factor into R. trifolii was 1.3 x 10(-4). Dye buoyant density and sucrose gradient centrifugation of R. trifolii DNA showed that the expression of the specified drug resistance of RP4 by R. trifolii was accompanied by the acquisition of an extrachromosomal, satellite DNA component which has indistinguishable physical properties from the R-factor in the donor strain. The significance of the transformation is discussed.

Ampicillin