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Matrix proteins of human hair as a tool for identification of individuals.

A rapid, simple, reproducible and relatively inexpensive electrophoretic technique for displaying the structural proteins of hair is described. Hairs from a large number of individuals were examined and a number of distinct differences are presented. The possibility of using these individual differences as a means of individual identification is discussed.

Electrophoresis↗

World Trade Center human identification project: experiences with individual body identification cases.

AIM: To present individual body identification efforts, as part of the World Trade Center (WTC) mass disaster identification project. METHODS: More than 500 samples were tested by using polymerase chain reaction (PCR) amplification and short tandem repeat (STR) typing. The extent to which the remains were fragmented and affected by taphonomic factors complicated the identification project. Anthropologists reviewed 19,000 samples, and detected inconsistencies in 69, which were further split into 239 new cases and re-sampled by DNA specialists. RESULTS: The severity and nature of the disaster required an interdisciplinary effort. DNA profiling of 500 samples was successful in 75% of the cases. All discrepancies, which occurred between bone and tissue samples taken from the same body part, were resolved by re-sampling and re-testing of preferably bone tissue. Anthropologists detected inconsistencies in 69 cases, which were then split into 239 new cases. Out of 125 "split" cases, 65 were excluded from their original case. Of these 65 cases, 37 did not match any profiles in M-FISys, probably because profiles were incomplete or no exemplar for the victim was available. Out of the 60 remains not excluded from their original case, 30 were partial profiles and did not reach the statistical requirement to match their original case, because the population frequency of the DNA profile had to be </=1 in 10(9) for men and </=1 in 10(8) for women. CONCLUSION: Due to transfer of soft tissue and other commingling of remains, DNA testing alone would have led to problems if only soft tissue would have been tested. This was one of the reasons that forensic anthropologists were needed to evaluate the consistency between all linked body parts. Especially in disasters with a high potential for commingling, the described anthropological review process should be part of the investigation.

DNA Fingerprinting↗

Individual DNA identification from ancient human remains.

Individual identification of ancient human remains is one of the most fundamental requisites for studies of paleo-population genetics, including kinship among ancient people, intra- and interpopulation structures in ancient times, and the origin of human populations. However, knowledge of these subjects has been based mainly on circumstantial archaeological evidence for kinship and intrapopulation structure and on genetic studies of modern human populations. Here we describe individual identification of ancient humans by using short-nucleotide tandem repeats and mtDNAs as genetic markers. The application of this approach to kinship analysis shows clearly the presence or absence of kinship among the ancient remains examined.

Adult↗

Short tandem repeat-based identification of individuals and parents.

Estimation of short tandem repeat (STR) multilocus genotype frequencies for the identification of individuals and estimation of allele frequencies for parentage assignment both depend on (a) testing a lot of loci, (b) high levels of polymorphism at each locus tested, and (c) independence among alleles. Independence is critical, because the estimation of multilocus genotype and gamete frequencies is based on multiplying individual allele frequencies to produce a composite frequency estimate. Independence among alleles at a locus is known as Hardy-Weinberg equilibrium, whereas allelic independence between loci is known as linkage equilibrium. The frequency at which individual identification may be declared is a matter of opinion, as there is no scientific way to specify certainty based on frequency estimates. Similarly absolute assignment of parentage is impossible in theory; in practice it is more difficult than individual identification, because only half as much information is available (gamete vs genotype frequency) and because mutation may confound parentage analysis.

DNA Fingerprinting↗

Identification of individual chromosomes and parental genomes in Brassica juncea using GISH and FISH.

The three diploid (B. nigra, B. oleracea, B. campestris) and three allotetraploid (B. carinata, B. juncea, B. napus) species of Brassica, known as the "U-triangle" are one of the best model systems for the study of polyploidy. Numerous molecular investigations have provided a wealth of new insights into the polyploid origin and changes during the evolution of Brassica, but there are still many controversial aspects of their relationship and evolution. Interpretation of genome changes during evolution requires individual chromosome identification within the genome and clear distinction of genomes within the allotetraploid. The aim of this study was to identify individual chromosomes of B. juncea (genome AABB; 2n = 4x = 36) and to determine their genomic origin. Fluorescence in situ hybridization with 5S and 45S rDNA probes enabled discrimination of a substantial number of chromosomes, providing chromosomal landmarks for 20 out of 36 chromosomes of B. juncea. Additionally, along with double target genomic in situ hybridization, it allowed assignment of all chromosomes to either the A or B genomes.

Brassica↗

Estimation of the number of genetic markers required for individual animal identification accounting for genotyping errors.

Nearly all studies that consider the power of exclusion for individual identification using genetic markers ignore the possibility of erroneous genotypes, although individual genotype error rates are approximately 1% for microsatellites. Single nucleotide polymorphisms (SNPs) have lower error rates, but because of their lower information content, more SNPs than microsatellites will be required to obtain the same power of exclusion for traceability. In this study, we accounted for genotyping mistakes by requiring at least two discrepancies to reject a match. Exclusion probabilities were computed analytically and by simulation. A microsatellite with five alleles was approximately comparable in exclusion power to 2-2.25 SNPs. At least eight SNPs were required to achieve a 99% probability of rejection for a match between two individuals, while with 25 SNPs there was a <1% chance for a match between any of five million individuals.

Alleles↗

Multiplexed microsatellites for rapid identification and characterization of individuals and populations of Cercopithecidae.

Cross-amplification of 15 human microsatellites was performed successfully in cynomolgus (Macaca fascicularis) and rhesus (M. mulatta) macaques and 11 other Cercopithecidae species of biomedical and conservation relevance. To allow for quick, efficient, and high-throughput genotyping to assess intra- and interspecific genetic variation, we performed three multiplex sets, each comprised of five markers from different parts of the genome (i.e., autosomes, the MHC region, and the X-chromosome). These multiplex sets are likely to reveal allelic divergence between taxa, which could be used for their discrimination. Population studies on three regional populations of M. fascicularis and one of M. mulatta revealed that most of the loci, with the exception of one monomorphic locus, displayed polymorphisms (the expected heterozygosities were 0.48-0.91 for M. fascicularis, and 0.61-0.93 for M. mulatta), which makes them useful for population genetics. For the multiplex set M1, including the nonlinked autosomal markers, low probabilities of identity were observed: P(ID) values ranged from 8 x 10(-7) to 3 x 10(-5). This multiplex set is reliable for forensic applications, such as individual identification, parentage testing, and kinship analysis, in wild and captive populations.

Animal Identification Systems↗

Polyclonal B-cell activation reveals antibodies against human immunodeficiency virus type 1 (HIV-1) in HIV-1-seronegative individuals.

Identification of human immunodeficiency virus type 1 (HIV-1)-infected individuals is of paramount importance for the control of the spread of AIDS worldwide. Currently, the vast majority of screening centers throughout the world rely on serological techniques. As such, clinically asymptomatic but HIV-infected, seronegative individuals are rarely identified. In this report we show that 18% (30/165) of seronegative individuals who were considered to be a unique cohort of patients at high risk for HIV infection had circulating B cells that, upon in vitro polyclonal activation with pokeweed mitogen, produced antibodies reactive with HIV. Furthermore, polymerase chain reaction analysis of DNA obtained from aliquots of the peripheral blood mononuclear cells from these seronegative but pokeweed mitogen assay-positive individuals tested revealed the presence of HIV-specific sequences in a significant number of samples. In addition, depletion of CD8+ T cells from peripheral blood mononuclear cells of HIV-1-seronegative individuals prior to in vitro culture with pokeweed mitogen resulted in increased sensitivity for detecting HIV-reactive antibodies. This assay has obvious epidemiological implications, especially in the case of high-risk groups, and also provides a simple technique to enhance detection of HIV-infected individuals. Of further interest is the determination of the mechanisms related to the lack of HIV-specific antibodies in the serum of these infected individuals.

Antigens, Differentiation, T-Lymphocyte↗

Permanent marking of colored mice using dry ice.

Freeze marking, using dry ice, was successfully applied to colored mice for permanent, individual, identification. By this method, a 5-8 mm piece of dry ice is pressed against the skin of mice for 10 seconds. About 3 weeks after this treatment, spots of white hair growing at the site of treatment became recognizable to the naked eye, and allowed permanent identification of individual animals thereafter. The white spots were very clear in colored mice, and greatly facilitated animal identification as compared to conventional marking methods. Treatment of the animals with dry ice for 10 seconds has no discernible effects on the site of the treatment or the general condition of the animals.

Animal Identification Systems↗

An overview of DNA methods for the identification and individualization of marijuana.

The purpose of this review is to summarize the status of DNA-based methods for the identification and individualization of marijuana. In forensics, both identification of a substance as marijuana and the subsequent individualization of a sample may be desired for casework. Marijuana identification methods in the United States primarily include biochemical tests and, less frequently, DNA-based tests. Under special circumstances, DNA-based tests can be useful. For example, if the quantity of seized marijuana is extremely small and/or biochemical tests do not detect any D9-tetrahydrocannabinol (THC), DNA identification of plant material as Cannabis is still possible. This circumstance can arise when seeds, trace residue, tiny leaf fragments, or fine roots need to be analyzed. Methods for the individualization of marijuana include amplified fragment length polymorphism (AFLP), random amplified polymorphic DNA (RAPD), and short tandem repeat (STR) techniques that link an evidentiary sample to a source. Marijuana growers propagate their plants either by seed or by cloning. Seed-generated marijuana plants are expected to have unique DNA profiles analogous to a human population. Cloned marijuana plants, however, exhibit identical DNA profiles that allow for tracking of plant material derived from a common genetic lineage. The authors have validated the AFLP method for marijuana samples and are constructing a comparative database of marijuana seizure samples to estimate the expected frequency of a DNA profile match between unrelated plants. Continued development of DNA-based methods for plants can be useful for marijuana and other types of plant evidence in forensics.

Cannabis↗

Feasibility of detection and identification of individual bioaerosols using laser-induced breakdown spectroscopy.

The detection and identification of individual bioaerosols using laser-induced breakdown spectroscopy (LIBS) is investigated using aerosolized Bacillus spores. Spores of Bacillus atrophaeous, Bacillus pumilus, and Bacillus stearothemophilus were introduced into an aerosol flow stream in a prescribed manner such that single-particle LIBS detection was realized. Bacillus spores were successfully detected based on the presence of the 393.4- and 396.9-nm calcium atomic emission lines. Statistical analyses based on the aerosol number density, the LIBS-based spore sampling frequency, and the distribution of the resulting calcium mass loadings support the conclusion of individual spore detection within single-shot laser-induced plasmas. The average mass loadings were in the range of 2-3 fg of calcium/Bacillus spore, which corresponds to a calcium mass percentage of approximately 0.5%. While individual spores were detected based on calcium emission, the resulting Bacillus spectra were free from CN emission bands, which has implications for the detection of elemental carbon, and LIBS-based detection of single spores based on the presence of magnesium or sodium atomic emission was unsuccessful. Based on the current instrumental setup and analyses, real-time LIBS-based detection and identification of single Bacillus spores in ambient (i.e., real life) conditions appears unfeasible.

Aerosols↗

Automated DNA profiling employing multiplex amplification of short tandem repeat loci.

We have employed automated fluorescence-based technology to detect amplified tri-, tetra-, and pentanucleotide short tandem repeat (STR) loci electrophoresed on denaturing polyacrylamide sequencing gels. The system described incorporates an internal size standard in each sample, allowing the STR-PCR products to be sized automatically with a high degree of precision. By utilizing different fluorescent dye markers for loci that have overlapping allele size ranges, we have developed three multiplex STR systems containing a total of 14 different loci. These multiplex systems were then used to evaluate the usefulness of the 14 loci for the identification of individuals. Allele frequency data were collected from a minimum of 50 individuals from each of three different racial groups: Caucasians, Afro-Caribbeans, and Asians. Of the resulting 42 locus population sets, deviation from Hardy-Weinberg equilibria was detected in only the STR HUMCYARO3-Caucasian data. The probabilities of two unrelated individuals matching by chance (pM) at all 14 loci in the three multiplex reactions was < 1 x 10(14). The combination of multiplex STR-PCR and automatic fluorescence-based detection is thus a rapid and powerful technique for individual identification.

Autoanalysis↗

[The application of D1S80 locus analysis to forensic problems by using Amp-FLP technique].

This is a paper on paternity testing in 85 test cases and the identification of individuals from mixed stains of semen and vaginal secretion in two rape cases. We used primers flanking the hypervariable region of the D1S80 gene to amplify DNA extracted from fresh blood, blood stain, saliva stain, semen stain, mixed stain in vaginal swab, and from fetal tissues. The results revealed that 35 out of 85 alleged fathers in 85 paternity testing cases were excluded. In 30 of the 35 excluded cases, the alleged fathers were excluded by D1S80 locus analysis. The exclusion rate was 35.29%. In 2 of the excluded cases, the alleged fathers were excluded by D1S80 locus analysis only. In 50 nonexcluded paternity testing cases, the paternity index(PI) of D1S80 locus was 2. 0576-111.1111. It indicates that D1S80 locus analysis plays an important role in elevation the relative chance of paternity (RCP) value. In 41 of the 50 nonexcluded cases, RCP was higher that 99.75%. RCP reached 99.300%-99.649% in 9 of cases. In one rape and homicide case, the genotype of D1S80 locus of sperm on the vaginal swab was detected. It gave a clue to investigation. In the other rape case, the genotype of D1S80 of sperm on the vaginal swab was consistent with the blood stain from the suspect. So the suspect was not excluded. Since the D1S80 locus has a high discrimination power it is very useful for forensic individual identification and parentage testing. Some problems have been discussed in this paper.

Blood Stains↗

[To be (a girl) or not to be! Or the sex of the angels? Problems in individuation (and identification) in a 3-year-old child. Case report, theoretical comments, treatment].

During a lengthy hospitalization in a pedopsychiatric department, with an intermediate several-week period at home, a child seen at the age of three with severe disorders of relationships and identity was able to progress significantly and to improve organization of personality. The authors report this case and show that this child's problems are largely due to the distortion of family relationships and personal identification problems of the two young parents who were unable to assume freely their own parental role for this child.

Child, Preschool↗

Identification of individual proteins in complex protein mixtures by high-resolution, high-mass-accuracy MALDI TOF-mass spectrometry analysis of in-solution thermal denaturation/enzymatic digestion.

Identification of individual proteins in complex protein mixtures by high-resolution (HR), high-mass-accuracy matrix-assisted laser desorption/ionization (MALDI) time-of-flight mass spectrometry (TOF-MS) is demonstrated for synthetic protein mixtures. Instead of chemical denaturation, thermal denaturation followed by in-solution trypsin digestion is used to achieve uniform digestion of the constituents of the protein mixture. Protein identification is carried out using protein database searches with search scoring systems, which seems more effective than conventional peptide mass mapping without using a scoring system. Identification of individual proteins by MALDI HR-TOF-MS peptide mass mapping dramatically reduces data acquisition/analysis time and does not require special equipment for sample preparation/transfer prior to mass spectral analysis.

Amino Acid Sequence↗

DNA assays for detection, identification, and individualization of select agent microorganisms.

The purpose of this article is to review the status of DNA assays used for the detection, identification, and individualization of Bacillus anthracis, Yersinia pestis, Francisella tularensis, Burkholderia mallei, and Brucella abortus. These select agent microorganisms are historically significant as they have either been used or experimented with as a bioweapon or as a terrorist agent and are the subject of intense research in the areas of biodefense and bioforensics. If the presence of a biological agent is suspected, sensitive and specific assays for rapid detection and identification are necessary. However, DNA methods for identification of the sample may also be applied in order to individualize the strain and potentially determine the source of the microorganism. Methods used at the Armed Forces Institute of Pathology (AFIP) for select agent microbial DNA analyses include DNA extraction, DNA quantitation, real-time polymerase chain reaction (real-time PCR) of genetic targets unique to the select agent microorganism, microbial 16S ribosomal RNA gene DNA sequencing, amplified fragment length polymorphism polymerase chain reaction (AFLP-PCR), and more recently, repetitive element polymerase chain reaction (REP-PCR) DNA fingerprinting. The methodologies of 16S ribosomal RNA gene DNA sequencing and DNA fingerprinting of microorganisms are well established within the field of diagnostic microbiology for DNA identification purposes, as well as DNA typing for epidemiological and genetic relatedness studies. 16S ribosomal RNA gene DNA sequencing and AFLP DNA fingerprinting have been validated at the Armed Force Institute of Pathology (AFIP) laboratory for identification purposes and can be used as a possible strain typing tool for Bacillus anthracis, Yersinia pestis, Francisella tularensis, as well as Brucella and Burkholderia species. The continued development and implementation of new DNA based methods with increased sensitivity and defined specificity will be particularly useful for the detection of residual microbial DNA signature in situations where the microorganism has been rendered nonviable by decontamination procedures or not able to be cultured on microbiological media.

Biological Warfare↗