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[Alu family and its biological significance].

The Alu family of short (approximately 300bp)interspersed elements (SINEs) is one of the most successful mobile genetic elements, having arisen to a copy number in excess of 500,000 within primate genomes in the last 65 million years. The proliferation of these elements had a significant impact on the architecture of primate genomes. Now the functions of Alu elements are still unclear. It is speculated that Alu elements are involved in aspects of gene regulation, e.g. gene rearrangement, CpG methylation, alternative splicing of hnRNA, binding sites of transcription factors and hormone receptors, etc. At the same time, Alu family is an important research method in human population genetics, forensic, oncology, etc. Additionally, Alu insertion, deletion and recombination led to many ancestor genetic diseases and cancers.

Alu Elements↗

[Use of modern gene technology in forensic medicine].

Modern DNA technology has had a great impact upon the practice of forensic genetics. Recently developed methods have disclosed different types of genetic variability in human DNA. Typing of genetic DNA polymorphisms based on point mutations represents an alternative to the blood and protein systems developed before. However, the discovery of the so-called hypervariable regions (HVR) in the genome, which represent grossly rearranged areas of DNA, has, revolutionised the field. "Fingerprints", nearly specific for each individual in the population, can be developed by employing specific probes, restriction enzymes and Southern blot technique. We present some results of the application of these techniques in criminal cases investigated at the Institute of Forensic Medicine in Oslo. In future, the sensitivity of the methods may be increased through amplification procedures (PCR reaction).

DNA Probes↗

Results of the 1999-2000 collaborative exercise and proficiency testing program on mitochondrial DNA of the GEP-ISFG: an inter-laboratory study of the observed variability in the heteroplasmy level of hair from the same donor.

The Spanish and Portuguese working group (GEP) of international society for forensic genetics (ISFG) 1999-2000 collaborative exercise on mitochondrial DNA (mtDNA) included the analysis of four bloodstain samples and one hair shaft sample by 19 participating laboratories from Spain, Portugal and several Latin-American countries. A wide range of sequence results at position 16,093 of the HV1 (from T or C homoplasmy to different levels of heteroplasmy) were submitted by the different participating laboratories from the hair shaft sample during the first phase of this exercise. During the discussion of these results in the Annual GEP-ISFG 2000 Conference a second phase of this exercise was established with two main objectives: (i) to evaluate the incidence of the HV1 sequence heteroplasmy detected in Phase I across different sample types from the same donor including blood, saliva, and hair shafts, (ii) to perform a technical review of the electropherograms to evaluate the relative levels of heteroplasmies obtained by the different laboratories and also to examine the source of possible errors detected in Phase I. Anonymous review of the raw sequence data permitted the detection of three transcription errors and three errors due to methodological problems. Highly variable levels of heteroplasmy were found in the hair shaft and more stability in blood and saliva. Three laboratories found variable levels of heteroplasmy at position 16,093 across adjacent fragments from the same hair shaft. Two laboratories also described more than one heteroplasmic position from a single hair. The relevance of these findings for the interpretation of mtDNA data in the forensic context is also discussed.

Blood Stains↗

A practical guide to mitochondrial DNA error prevention in clinical, forensic, and population genetics.

Several suggestions have been made for avoiding errors in mitochondrial DNA (mtDNA) sequencing and documentation. Unfortunately, the current clinical, forensic, and population genetic literature on mtDNA still delivers a large number of studies with flawed sequence data, which, in extreme cases, damage the whole message of a study. The phylogenetic approach has been shown to be useful for pinpointing most of the errors. However, many geneticists, especially in the forensic and medical fields, are not familiar with either effective search strategies or the evolutionary terminology. We here provide a manual that should help prevent errors at any stage by re-examining data fresh from the sequencer in the light of previously published data. A fictitious case study of a European mtDNA data set (albeit composed from the literature) then demonstrates the steps one has to go through in order to assess the quality of sequencing and documentation.

DNA, Mitochondrial↗

Non-invasive method for sampling and extraction of mouse DNA for PCR.

We adapted a non-invasive, fast, reliable and inexpensive procedure for the sampling and extraction of deoxyribonucleic acid (DNA) for genetic testing of mice. The procedure is based on a simple DNA extraction procedure used in the forensic genetic testing of humans. It involves mouth swabbing of the inner cheek using a cotton stick, followed by alkaline lysis of the harvested buccal epithelial cells. This procedure allows for repeated sampling and genetic testing of the individual mouse, and it is faster, simpler and, in our hands, more reliable than the currently used routine procedures for the sampling and extraction of mouse DNA. Current procedures all involve biopsy of a piece of the tail, ear or toe, followed by lengthy procedures to release and isolate the DNA.

Animals↗

Characterization of the D18S535 STR locus in northern Ontario European and Aboriginal populations for forensic purposes.

Genetic characterization of one European and three aboriginal populations from northern Ontario was undertaken to assess the utility of the D18S535 short tandem repeat locus (STR) as a genetic marker for forensic DNA typing in the region. The D18S535 locus was amplified using monoplex polymerase chain reaction (PCR), separated by denaturing polyacrylamide gel electrophoresis (PAGE), and visualized using the silver-stain detection method. The generated population data demonstrated that the D18S535 locus is highly polymorphic with a heterozygosity of > or = 0.75. The exact test showed violations of Hardy-Weinberg equilibrium in two of the aboriginal populations. Pairwise comparisons of allele-frequency distributions indicated that the four northern Ontario populations were significantly different from each other. This test also revealed that the northern Ontario populations differed significantly from ten European populations (from Germany, Spain, and Croatia) and one population from South America (from Argentina). Forensic parameters showed that the D18S535 locus is highly discriminating (power of discrimination > or = 0.85, chance of exclusion > or = 0.51); however, the lack of Hardy-Weinberg equilibrium in some of the populations must be taken into account in the application of these results to northern Ontario forensic casework.

American Indian or Alaska Native↗

[Mitochondrial DNA sequencing of human hair shafts stored for long time].

Mitochondrial DNA (mtDNA) sequencing is commonly used for forensic genetic identification of relation and personality identification based on analysis of tooth and skeletal rudiments. We demonstrated the possibility of DNA extraction and subsequent enzymatic amplification of fragments of a hypervariable segment I of mtDNA control region from hair shafts after long storage (up to 75 years). Shed hairs are the most common biological material evidence in forensic investigations. Low content of DNA and its possible degradation in hair shafts without bulbs may cause artifacts in polymerase chain reaction. However comparative analysis of amplified nucleotide sequences of amplified fragments from hair stored for 75 years was identical to the sequence from hairs cut immediately before experiment. This indicates high quality of the resultant matrices, stability of results, and hence, the possibility of using DNA extracted from hair shafts without bulbs stored for a long time for expert genetic analysis. Theoretical and methodological prospects of using mtDNA polymorphism analysis for forensic expert evaluations are discussed.

Adult↗

Which short tandem repeat polymorphisms are required for identification? Lessons from complicated kinship cases.

This paper presents 5 examples of complicated deficient parentage cases, which were sufficiently resolved by extensive DNA typing using short tandem repeat (STR) and restriction fragment length polymorphisms (RFLPs). The latter have greatly contributed to the solution of deficiency cases, although their application is only feasible, if high molecular weight DNA and time are in abundance. This apart, RFLP technique is available in a few laboratories only, and its extinction can be expected in medium term. This development will pose a problem unless more highly polymorphic STR systems are at the service of forensic genetic laboratories. The required "new" additional STR polymorphisms must be able to fully replace RFLPs in terms of their respective information content. STR loci of this quality are e.g. ACTBP2 (SE33), D5S2360, and gonosomal loci. Moreover, the newly introduced STR kit "Humantype Chimera" is considered valuable from this point of view.

Family↗

A novel method for forensic DNA investigations: repeat-type sequence analysis of tandemly repeated mtDNA in domestic dogs.

A highly variable and heteroplasmic tandem repeat region situated in the mitochondrial mt DNA control region (CR) in domestic dogs and wolves was studied to evaluate its suitability as a forensic genetic marker for analysis of single hairs. The tandem repeat array is composed of three 10-bp repeat types that are distributed so that a secondary DNA sequence is formed. Thus, the region presents two levels of variation: variation in the number of repeats and variation in the secondary DNA sequence of repeat types. Two analysis methods were therefore tested; fragment length analysis and analysis of the sequence of repeat types. Fragment analysis produced unique profiles that could be used to discriminate between blood samples from maternally closely related individuals. However, different hairs from one individual did not have the same fragment profile, and the method is, therefore, not suitable for analysis of single hairs. In contrast, analysis of the repeat type sequences (array types) is highly informative. When different hairs from one individual were studied, identical array types were found. The repeat-type sequence variation was studied among individuals having identical nonrepetitive CR mtDNA sequence variants. Seven, six, and two individuals, representing three different sequence variants, respectively, were analyzed. All these individuals had different array types, which implies a very high genetic variation between individuals in this region. The analysis method considerably improves the exclusion capacity of mtDNA analysis of domestic dogs compared with sequence analysis of non-repetitive DNA.

Animals↗

Endogamy, consanguinity and community disease profiles.

Considerable attention is paid to the role of consanguineous marriage as a causative factor in the prevalence of genetic disorders. At the same time, the potential influence of community endogamy on overall levels of homozygosity and disease profiles remains largely under-investigated. With the ongoing global epidemiological transition from infectious to non-communicable disease, the impact of genetic disorders will become increasingly important and a thorough understanding of the determinants of human population-genetic structure will be all the more necessary. In particular, the genetic components of adult-onset diseases will become more obvious and assume greater significance. Similarly, refinements of study design to incorporate intercommunity genetic variation appear to be an essential prerequisite in pharmacogenetic research if the concept of individualized treatments is to achieve reality, with equivalent subject-control comparison difficulties also predicted in forensic genetics.

Consanguinity↗

[Study of genetic polymorphism of 6 short tandem repeat loci in Nongqu Mongolian of inner Mongolia Autonomous Region in China].

OBJECTIVE: To get the genotype and allele frequency distribution of 6 short tandem repeat (STR) loci VWA, FGA, PENTAE, D6S1043, D2S1772, D7S3048 in NongQu Mongolia of China. METHODS: Two hundred and ninety-three unrelated individuals from Nongqu Mongolian were investigated. Polymerase chain reaction and polyacrylamide gel electrophoresis were used. RESULTS: Eighty alleles and 335 genotypes were detected, with frequencies ranging from 0.0017 to 0.2828. All the 6 loci met Hardy-Weinberg equilibrium. The statistical analysis of 6 STR loci showed the heterozygosity (H) >/= 0.7945, the discrimination power (DP) >/= 0.9160, the probability of paternity exclusion (PPE) >/= 0.5919, and the polymorphic information content (PIC) >/= 0.7617. CONCLUSION: These results could serve as valuable data to enrich the Chinese genetic database and play an important role in Chinese population genetic forensic medical application.

Alleles↗

Y-chromosome STR haplotypes in the Açores Archipelago (Portugal).

Allele and haplotype frequencies of 10 Y-chromosome STR loci were co-amplified in a sample from the Açores Islands (Portugal). We found high haplotype diversity in the Açores sample (0.998). The genetic profile of this population revealed to be statistically different from that of Madeira Island and from North Portugal, two related populations with already a fairly amount of published data. This result stresses the importance of using local databases in forensic genetics.

Chromosomes, Human, Y↗

Fluorescence-based resource for semiautomated genomic analyses using microsatellite markers.

To facilitate the practical application of highly efficient semiautomated methods for general application in genomic analyses, we have developed a fluorescence-based microsatellite marker resource. Ninety highly polymorphic microsatellite markers were combined to provide a rapid, accurate, and highly efficient initial genome-wide screening system. These markers are spaced on average every 33 cM, with a mean heterozygosity of 81% (range 65-94%), covering 22 autosomes and the X and Y chromosomes. Less than 10% of the genome lies beyond 20 cM of the nearest marker. Since this genomic analysis system is fully compatible with automated fragment analyzers using simultaneous four-color fluorescence-based detection systems, the 5 groups of 18 markers can be detected concurrently. This multiplex detection provides a through-put of 1944 genotypes daily per instrument. This system will be highly beneficial in a number of clinical and research applications including linkage, cancer genetics, forensics, and cytogenetics.

Base Sequence↗

Analysis of body fluid mixtures by mtDNA sequencing: An inter-laboratory study of the GEP-ISFG working group.

The mitochondrial DNA (mtDNA) working group of the GEP-ISFG (Spanish and Portuguese Group of the International Society for Forensic Genetics) carried out an inter-laboratory exercise consisting of the analysis of mtDNA sequencing patterns in mixed stains (saliva/semen and blood/semen). Mixtures were prepared with saliva or blood from a female donor and three different semen dilutions (pure, 1:10 and 1:20) in order to simulate forensic casework. All labs extracted the DNA by preferential lysis and amplified and sequenced the first mtDNA hypervariable region (HVS-I). Autosomal and Y-STR markers were also analysed in order to compare nuclear and mitochondrial results from the same DNA extracts. A mixed stain prepared using semen from a vasectomized individual was also analysed. The results were reasonably consistent among labs for the first fractions but not for the second ones, for which some laboratories reported contamination problems. In the first fractions, both the female and male haplotypes were generally detected in those samples prepared with undiluted semen. In contrast, most of the mixtures prepared with diluted semen only yielded the female haplotype, suggesting that the mtDNA copy number per cell is smaller in semen than in saliva or blood. Although the detection level of the male component decreased in accordance with the degree of semen dilution, it was found that the loss of signal was not consistently uniform throughout each electropherogram. Moreover, differences between mixtures prepared from different donors and different body fluids were also observed. We conclude that the particular characteristics of each mixed stain can deeply influence the interpretation of the mtDNA evidence in forensic mixtures (leading in some cases to false exclusions). In this sense, the implementation of preliminary tests with the aim of identifying the fluids involved in the mixture is an essential tool. In addition, in order to prevent incorrect conclusions in the interpretation of electropherograms we strongly recommend: (i) the use of additional sequencing primers to confirm the sequencing results and (ii) interpreting the results to the light of the phylogenetic perspective.

Blood↗

D17S30 and TP53 VNTR loci polymorphisms in a Turkish population.

VNTR loci are useful as genetic markers in population genetics, forensics, and chimerism detection because of their high level of variability. In this study we present frequency information for two polymorphic VNTR loci, namely, D17S30 and TP53, which we examined in 100 healthy individuals from a Turkish population.

Chimera↗

A standard protocol for single nucleotide primer extension in the human genome using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry.

Analysis of single nucleotide polymorphisms (SNPs) has become an increasingly important area of research, with numerous applications in medical genetics, population genetics, forensic science, and agricultural biotechnology. Large-scale SNP analyses require the development of methodologies that are economical, flexible, accurate and capable of automation. Primer extension in conjunction with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOFMS) is currently emerging as a potential method for high-throughput SNP genotyping. We have evaluated a number of published primer extension methods and refined a simple and robust protocol to analyze human autosomal disease-causing mutations and population genetic markers on the Y-chromosome. Twelve different variant sites were examined, and homozygotes, heterozygotes and hemizygotes were accurately typed. A 100% concordance was observed between SNP genotypes obtained using the MALDI-TOFMS technique and alternative genotyping methods, such as restriction fragment length polymorphism (RFLP) assays and denaturing high-performance liquid chromatography (DHPLC). Since multiple polymorphisms can be detected in single reactions, the method provides a cost-effective approach for SNP analysis. The protocol is also extremely flexible (able to accommodate new markers) and can be adapted to a number of platforms without the use of commercial kits.

Chromosomes, Human, Y↗

Nuclear insertion sequences of mitochondrial DNA predominate in hair but not in blood of elephants.

Hair has become a widely used source of DNA in population genetics, forensics, and conservation biology. Here were report that PCR primers that amplify a segment of the mitochondrial control region from blood DNA amplify primarily integrated nuclear copies of mitochondrial DNA from hair DNA. Thus, in some species, and under some circumstances, DNA from hair may yield unreliable results.

Animals↗

Validation of cytochrome b sequence analysis as a method of species identification.

One of the stages of dealing with biological material submitted to forensic laboratories is species identification. The aim of the present work was to validate and assess the possibility of applying sequence analysis of the region coding cytochrome b as a method of species identification in the field of forensic science. DNA originating from individuals from major phyla of vertebrates was isolated by the organic method from various specimens. Extracted DNA was subjected to PCR and direct cycle sequencing using a universal pair of primers. The validation process, performed according to TWGDAM recommendations, revealed that the technique is a very sensitive and reliable method of species identification allowing analysis of tiny amounts of material and also degraded material, and can be useful in the field of forensic genetics. The case example presented here, concerning the determination of species origin of biological evidence collected from fatal road accident, confirms that analysis can be carried out even when there is no reference sample, and the sequences obtained can be assessed through analysis of their similarity to sequences for cytochrome b present in DNA databases.

Animals↗