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Biomedical subjects

G Vegarud

Publications and source records attributed to G Vegarud.

8 recordsLinked to original sources

Total bacterial and species-specific 16S rDNA micro-array quantification of complex samples.

AIMS: We describe a novel DNA-micro-array-based method that targets 16S rDNA to quantify changes in both the total bacterial DNA and the species-specific DNA composition. METHODS AND RESULTS: Quantifications were achieved by combining competitive PCR for quantifying total bacterial DNA with quantification of species-specific DNA composition based on signature 16S rDNA sequences. We constructed 11 different probes, which were evaluated on 21 different strains, in addition to complex samples. The signals obtained with sequence-specific labelling of the probes corresponded well with what should be expected based on 16S rDNA phylogenetic reconstruction. The quantification of species-specific DNA composition showed that the micro-array approach could be used to accurately determine differential growth of bacteria in mixed samples. We analysed samples containing mixtures of Lactococcus lactis and different species of propionibacteria during a 2-week incubation period. Lactococcus lactis grew fast, reaching a maximum after 12 h, Propionibacterium acidipropionici and Propionibacterium freudenreichii reached a maximum after 48 h, whereas Propionibacterium jensenii showed a slow increase during the whole growth period. The 16S rDNA total bacterial DNA quantification was compared with real-time PCR, absorbance measurements (ABS600) and colony forming units (CFU). CONCLUSION: The accuracy of the array approach was in the same range or better than the alternative techniques. The potential of the 16S rDNA micro-array method was further demonstrated using a liquid cheese model. SIGNIFICANCE AND IMPACT OF THE STUDY: This is to our knowledge the first time quantification of the total bacterial DNA and the species-specific DNA compositions of mixed populations have been achieved in the same assay.

Cheese↗

Autolysis of lactococci: detection of lytic enzymes by polyacrylamide gel electrophoresis and characterization in buffer systems.

Lactococcal strains were screened for bacteriolytic activity against Micrococcus luteus cells, lactococcal cells, and cell walls. Thirty strains were screened for bacteriolytic activity against cells and cell walls incorporated into agar medium. Enzymes from all strains hydrolyzed the substrates; however, the activity against Micrococcus cells was much higher than against Lactococcus cells or cell walls. Electrophoretic profiles of bacteriolytic activities of culture supernatants, sodium dodecyl sulfate-treated cell extracts, cell wall fractions, and cell extracts were analyzed in sodium dodecyl sulfate-polyacrylamide gels containing M. luteus cells or lactococcal cell walls as the substrate. The 22 strains tested contained two to five lytic bands in the culture supernatant, ranging in size between 32 and 53 kDa. The cell extracts, the sodium dodecyl sulfate-treated cell extracts, and the cell wall fractions revealed two lytic bands of 47 and 53 kDa. Effects of external factors on autolysis of some strains were determined in buffer systems. Optimal autolysis was observed in the exponential growth phase at pH 6.0 to 7.5 and at a temperature of 30(deg)C. Two of three strains tested seemed to contain a glycosidase, and all three strains contained an N-acetylmuramyl-l-alanine amidase or an endopeptidase.

Journal Article↗

A method for kappa-casein genotyping of bulls.

A method for kappa-casein genotyping in bulls has been developed. By analysis of DNA polymorphisms we are able to discriminate between the kappa-casein variant A and B in the bulls. This method will be an efficient tool in selection for the most desirable kappa-casein variant.

Animals↗

Addition of xylitol to the growth medium of Streptococcus mutans OMZ 176--effect on the synthesis of extractable glycerol-phosphate polymers.

Addition of 5% xylitol to growing cultures of Streptococcus mutans OMZ 176 reduced the amount of extractable glycerol-phosphate polymers in these cells compared to S. mutans cultures grown in medium with 5% glucose added. The glycerol-phosphate polymers were extracted from the cells by hot phenol-water-extraction, and separated by column chromatography. Lipoteichoic acid (LTA) was identified by indirect haemagglutination tests and lipid analysis. The amount of LTA extracted from the cells or present in the medium was not significantly different. It is suggested that the accumulation of intracellular xylitol-phosphate observed in a previous study causes an effect similar to glucose starvation, which is known to affect the composition of the cell wall.

Dental Plaque↗

Growth inhibition of Streptococcus mutans strain OMZ 176 by xylitol.

The present study showed that xylitol exhibited a dose-related inhibition of the growth of Streptococcus mutans in a Brain Heart Infusion medium. It is suggested that the mechanism involved may be an effect of the translocation of glucose across the bacterial cell membrane. Sorbitol showed no similar effect but caused a delay in the reaching of the stationary phase.

Culture Media↗