Oligonucleotide Fingerprinting Using Simple Repeat Motifs: A Convenient, Ubiquitously Applicable Method to Detect Hypervariability for Multiple Purposes
- 1 January 1991
- book chapter
- Published by Springer Nature
- Vol. 58, 50-69
- https://doi.org/10.1007/978-3-0348-7312-3_4
Abstract
A panel of simple repetitive oligonucleotide probes has been designed and tested for multilocus DNA fingerprinting in some 200 fungal, plant and animal species as well as man. To date at least one of the probes has been found to be informative in each species. The human genome, however, has been the major target of many fingerprinting studies. Using the probe (CAC)5 or (GTG)5, individualization of all humans is possible except for monozygotic twins. Paternity analyses are now performed on a routine basis by the use of multilocus fingerprints, including also cases of deficiency, i.e. where one of the parents is not available for analysis. In forensic science stain analysis is feasible in all tissue remains containing nucleated cells. Depending on the degree of DNA degradation a variety of oligonucleotides are informative, and they have been proven useful in actual case work. Advantages in comparison to other methods including enzymatic DNA amplification techniques (PCR) are evident. Fingerprint patterns of tumors may be changed due to the gain or loss of chromosomes and/or intrachromosomal deletion and amplification events. Locus-specific probes were isolated from the human (CAC)5/(GTG)5 fingerprint with a varying degree of informativeness (monomorphic versus truly hypervariable markers). The feasibility of three different approaches for the isolation of hypervariable mono-locus probes was evaluated. Finally, one particular mixed simple (gt)n(ga)m repeat locus in the second intron of the HLA-DRB genes has been scrutinized to allow comparison of the extent of exon-encoded (protein-) polymorphisms versus intronic hypervariability of simple repeats: adjacent to a single gene sequence (e.g. HLA-DRB1*0401) many different length alleles were found. Group-specific structures of basic repeats were identified within the evolutionarily related DRB alleles. As a further application it is suggested here that due to the ubiquitous interspersion of their targets, short probes for simple repeat sequences are especially useful tools for ordering genomic cosmid, yeast artificial chromosome and phage banks.Keywords
This publication has 39 references indexed in Scilit:
- Coamplification of simple repetitive DNA fingerprint fragments and the EGFR gene in human gliomasGenes, Chromosomes and Cancer, 1991
- Detection of single and multiple polymorphic loci by synthetic tandem repeats of short oligonucleotidesElectrophoresis, 1991
- Oligonucleotide fingerprinting with (CAC)5: Nonradioactive in‐gel hybridization and isolation of individual hypervariable lociElectrophoresis, 1991
- Plant DNA fingerprinting with radioactive and digoxigenated oligonucleotide probes complementary to simple repetitive DNA sequencesElectrophoresis, 1991
- On paternity determination from multilocus DNA profilesElectrophoresis, 1991
- New Mutation versus Exclusion at the Alpha-1-Antitrypsin Locus: A Multif aceted Approach in a Problematical Paternity CaseHuman Heredity, 1991
- Determining consanguinity by oligonucleotide fingerprinting with (GTG)5/(CAC)5Electrophoresis, 1991
- Simple repetitive sequences are associated with differentiation of the sex chromosomes in the guppy fishJournal of Molecular Evolution, 1990
- PHYLOGENIES FROM MOLECULAR SEQUENCES: INFERENCE AND RELIABILITYAnnual Review of Genetics, 1988
- Optimized oligonucleotide probes for DNA fingerprintingElectrophoresis, 1988