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An improvement of restriction analysis of bacteriophage DNA using capillary electrophoresis in agarose solution

✍ Scribed by Dr. Karel Klepárník; Zdeňka Malá; Jiři Doškař; Stanislav Rosypal; Petr Boček


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
975 KB
Volume
16
Category
Article
ISSN
0173-0835

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✦ Synopsis


An improvement of restriction analysis of bacteriophage DNA using capillary electrophoresis in agarose solution

Seven representatives of the serogroup B Staphylococcus aureus bacteriophages, 29, 53, 55, 83A, 85, $11 and 8Oa, were examined by capillary electrophoresis (CE) for genomic homology using DNA restriction analysis. Genomic DNA of individual bacteriophages was cleaved by Hind111 restriction endonuclease, and the resulting restriction fragments were separated by standard horizontal agarose slab gel electrophoresis (SGE) as well as by CE in low-meltingpoint agarose solutions. The number and size of restriction fragments identified by both methods were compared. The high separation power of CE makes it possible to extend the restriction fragment patterns. In most of the restriction patterns, some additional restriction fragments as small as 150 bp, not identified by SGE, were detected. With respect to speed, high separation effciency, low sample consumption and automation, CE offers a simple procedure for processing of multiple samples cost-effectively in a reasonable time. The comparison of the complemented restriction patterns of the different phage strains and the subsequent identification of their common fragments leads to a deeper understanding of their phylogenetic relationships. The genome homologies expressed for individual phage pairs in terms of coefficient F values ranged from 15 to 69%. These values are in good accordance with the degree of DNA homology of these phages as determined by DNA hybridization studies and thermal denaturation analysis of DNA by other authors. The total size of each phage genome was estimated by adding the sizes of individual restriction fragments. buffer Very popular is the application of various derivatives of


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## DNA cycle sequencing of a common restriction fragment of Staphylococcus aureus bacteriophages by capillary electrophoresis using replaceable linear polyacrylamide The nucleotide sequence of a part of a 4.9 kbp common restriction fragment isolated from Staphylococcus aureus bacteriophage (bacter