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Improved specificity of Y-STR typing in DNA mixture samples.

Y-STR loci are beneficial for the analysis of forensic samples especially in sexual assault cases or other situations where mixtures of male and female cells are present. However, the amplification of Y-chromosomal STRs is also known to result in the formation of artefactual amplification products, mainly due to insufficient PCR specificity. This is a major drawback of the method, as the sensitivity as well as the correct Y-STR interpretation are affected. In our study, the addition of a PCR enhancer to the reaction master-mix resulted in a significant increase of specificity of Y-STR typing. This was clearly demonstrated by a loss of artefactual signal with increasing enhancer concentration, while the peak heights of the Y-STR alleles were not significantly affected by the enhancer. Mixtures of up to 1:500 (200 pg male and 100 ng female DNA) gave correct Y-STR profiles when the PCR enhancer was added to the reaction, while artefactual amplification succeeded over Y-specific amplification when no PCR enhancer was present.

Chromosomes, Human, Y↗

Bimodal allele frequency distribution at Y-STR loci DYS392 and DYS438: no evidence for a deviation from the stepwise mutation model.

A deviation from the stepwise mutation model (SMM) has been suggested for the trinucleotide Y-STR locus DYS392, based upon its bimodal allele frequency distribution in various populations. The same type of distribution is also observed for the pentanucleotide Y-STR DYS438. In order to verify whether a departure from an SMM is likely for these two loci, we studied a large number of Portuguese male DNA samples typed for the two loci and in addition, for the Y-STR loci DYS19, DYS389I/II, DYS390, DYS391 and DYS393. The compatibility of the observed allele frequency spectrum with an SMM was assessed by an apportionment of the molecular variance among, and consideration of the molecular distances between, haplotype groups defined according to their allelic state at each of the two markers of interest. For haplotypes carrying either modal alleles 11 or 13 of DYS392, 18.6% of the molecular variance of the remaining Y-STR background could be attributed to variation between the two groups. When all pairwise Phi(st) values between haplotype groups were compared, group 12 was found to be closer to 11 than to 13, and group 14 was much closer to 13 than to 12 and 11. It may therefore be concluded that DYS392 allele 13 represents an evolutionary lineage with little or no relationship to 11 and 12. Furthermore, allele 14 is a one-step neighbour of 13 and is therefore likely to represent an offshoot from group 13. For haplotypes carrying either modal allele 10 or modal allele 12 of DYS438, 27.7% of the molecular variance of the Y-STR background was found to be due to variation between the two groups. Comparison of the other pairwise Phi(st) values indicated that group 10 was closer to 9 and 11 than to 12, and that group 12 was closer to 11 and 13 than to 10. The lineages defined by the two modal alleles of DYS438 therefore also seem to be phylogenetically distant. When the two loci were analysed in combination, using the standardised linkage disequilibrium measure (D'), a strong association was noted between alleles DYS392*11 and DYS438*10 (D'=0.70) and between DYS392*13 and DYS438*12 (D'=0.72). Taken together, these results show that the bimodal allele frequency distributions of DYS392 and DYS438 are explicable in terms of (probably the same) historical and demographic causes, rather than a mutational mechanism other than SMM. The loci do therefore not appear to warrant any special attention when applied in population genetic or forensic studies.

Chromosomes, Human, Y↗

Population genetic study in two Transylvanian populations using forensically informative autosomal and Y-chromosomal STR markers.

Our study provides population genetic data on two population samples collected in a Hungarian speaking region of Transylvania, Romania. Allele frequency and profile databases were generated on 17 autosomal STR loci (D2S1338, D3S1358, D5S818, D7S820, D8S1179, D13S317, D16S539, D18S51, D19S433, D21S11, VWA, FGA, TH01, TPOX, CSF1PO, Penta E and Penta D) as well as at the 12 European Y-STR extended haplotype loci (DYS19, DYS389-I/II, DYS390, DYS391, DYS392, DYS393, DYS385 loci, DYS437, DYS438 and DYS439). Data were compared to a Central Hungarian (Budapest region) population sample [B. Egyed, S. Füredi, M. Angyal, L. Boutrand, A. Vandenberghe, J. Woller, Z. Padar, Analysis of eight STR loci in two Hungarian populations, Forensic Sci. Int. 113 (2000) 25-27] that was used as a reference group of the Hungarian population. Calculating the F(ST) indices and with the pairwise comparisons of interpopulation molecular variance (AMOVA) the two populations from Transylvania could be fit into the Hungarian population data showing less substructuring effects as compared to the previous findings in Hungary [B. Egyed, S. Füredi, M. Angyal, L. Boutrand, A. Vandenberghe, J. Woller, Z. Padar, Analysis of eight STR loci in two Hungarian populations, Forensic Sci. Int. 113 (2000) 25-27; B. Egyed, S. Füredi, M. Angyal, I. Balogh, L. Kalmar, Z. Padar, Analysis of the population heterogeneity in Hungary using fifteen forensically informative STR markers, Forensic Sci. Int. 158 (2005) 244-249].

Chromosomes, Human, Y↗

Validation and casework testing of the BioPlex-11 for STR typing of telogen hair roots.

A new STR typing strategy has been developed allowing the simultaneous amplification and subsequent analysis of 11 polymorphic systems with amplicon sizes smaller than 270bp. The multiplex amplification reaction includes six STR loci from the European standard set of loci (ESS) for DNA databases (D3S1358, D8S1179, D21S11, THO1, FGA and VWA) as well as four additional STR systems selected for their robustness (D2S1338, D12S391, TPOX and D5S818) together with the sex-specific locus amelogenin. After PCR amplification, the multiplex reaction is splitted into two sets of STR multiplexes by using biotin labelled primers only for one set. Using streptavidin-coated Sepharose beads five STR systems are separated from the other six systems prior to being analysed in two different runs on a capillary gel electrophoresis instrument. The multiplex system was developed and tested especially for the use in forensic casework if only limited amounts or highly degraded DNA is available, for instance, when isolated from telogen hair roots.

Amelogenin↗

Grouping of Y-STR haplotypes discloses European geographic clines.

Y-STR haplotypes are widely studied in Europe and an extensive databasing effort has been conducted (http://www.ystr.org). The distribution of these haplotypes has been considered to present no evidence for substructure at central and southern European level. This picture contrasts with the one that results from Y haplogroups defined by binary markers. This paradox has been solved by admitting that the high STR mutation rate and corresponding recurrence has erased geographic structuration. This explanation prompted us to reanalyse Y-STR haplotypes distribution bearing in mind the commonly admitted model for the generation of diversity in these markers, namely the stepwise mutation model (SMM) and, thus, taking the molecular distance between haplotypes into consideration. Accordingly, we have studied the European distribution of the two most frequent haplotypes in the Iberian Peninsula and their one step neighbours using the European samples deposited in the Y STR database (http://www.ystr.org). For the first group we found a clear-cut decreasing W-E gradient, while for the second the highest frequencies were found in the Iberian Peninsula (3.98% in Portugal and 3.85% in Spain), dropping to 2.88% in France and showing a less well defined SW-NW gradient. Furthermore, we have tested the agreement between haplotype groups and binary markers haplogroups in a random sample of 292 individuals from Northern Portugal. Our results demonstrate that (a) Y-STR haplotype data can be used for wide-scale anthropological approaches disclosing information that has been considered only available through binary markers and (b) forensic use of continental databases needs careful refinement, due to the macro-geographic pattern now evidenced.

Chromosomes, Human, Y↗

Role of the adrenals in the development of streptozotocin (STR)-induced diabetes in male albino rats.

Diabetes induced by streptozotocin (STR) (55 mg/kg i.v.) in non-fasting, male albino rats is considerably mitigated by adrenalectomy. The timing of the operation is important for the effect of blood glucose. The later the adrenalectomy, the lesser the protection against STR. Plasma insulin in intact, STR-treated rats is significantly lower than in rats that have also been adrenalectomized. Pancreatic insulin in both groups is 10 times lower than in normal controls and adrenalectomized rats. Plasma FFA are distinctly elevated in intact, STR-treated rats. Adrenalectomy in these diabetic animals reduces plasma FFA to levels below those of normal controls. The changes in the glycogen contents of the diaphragm and myocardium of STR-treated rats are reversed by adrenalectomy. The rate of pancreatic insulin degradation might be retarded or the rate of secretion increased. In addition, sensitivity to insulin is exaggerated after adrenalectomy, as is evident from the changes in blood sugar and the glycogen contents of the organs. These changes in the effects of insulin are ascribed to deprivation of adrenal steroids and in particular glucocorticoids. Loss of the adrenal medulla is presumably one of the causes of the changes in plasma FFA.

Adrenal Glands↗

Quantification of chimerism within peripheral blood, bone marrow and purified leukocyte subsets: comparison of singleplex and multiplex PCR amplification of short tandem repeat (STR) loci.

OBJECTIVE AND METHODS: Chimerism analysis has become a routine diagnostic procedure after haematopoietic allogeneic stem cell transplantation for early detection of relapse of disease or graft failure. Whereas some centres developed individual in-house short tandem repeat (STR) systems, others prefer commercial multiplex PCR systems. However, little is known about inter-assay variation, which could have a significant impact on treatment decision. We therefore compared two commercial multiplex PCR kits with our in-house STR system using different sample sources, such as peripheral blood (PB), bone marrow (BM) and specific leukocyte subsets. RESULTS: Fifty samples of eighteen paediatric patients were analysed. For neither material, PB, BM and leukocyte subtypes, a significant difference between the STR systems tested was observed. Chimerism analyses of each single STR primer, which is component of both the in-house and the commercial STR system, did not reveal significant differences. CONCLUSION: Our analysis demonstrates that similar results can be obtained with both assays, even when using various sample sources. Further evaluation of different test systems will help to increase interlaboratory standardisation of chimerism analyses for early clinical intervention.

Adolescent↗

Acquisition of certain streptomycin-resistant (str) mutations enhances antibiotic production in bacteria.

Physiological differentiation (including antibiotic production) in microorganisms usually starts when cells encounter adverse environmental conditions and is frequently accompanied by an increase in the accumulation of intracellular ppGpp. We have found that the acquisition of certain streptomycin-resistant (str) mutations enables cells to overproduce antibiotics, demonstrating an increase in productivity 5- to 50-fold greater than that of wild-type strains. The frequency of such antibiotic-overproducing strains among the str mutants was shown to range from 3 to 46%, as examined with several strains of the genera Streptomyces, Bacillus, and Pseudomonas. Analysis of str mutants from Bacillus subtilis Marburg 168 revealed that a point mutation occurred within the rpsL gene, which encodes the ribosomal protein S12, changing Lys-56 (corresponding to Lys-43 in Escherichia coli) to Asn, Arg, Thr, or Gln. Antibiotic productivity increased in a hierarchical manner depending upon which amino acid residue replaced Lys at this position. The strA1 mutation, a genetic marker frequently used for mapping, had no effect on antibiotic productivity even though it was found to result in an amino acid alteration of Lys-56 to Ile. Gene replacement experiments with the str alleles demonstrated unambiguously that the str mutation is responsible for the antibiotic overproductivity observed. These results offer a rational approach for improving the production of antibiotic (secondary metabolism) from microorganisms.

Alleles↗

Noncell- and cell-autonomous G-protein-signaling converges with Ca2+/mitogen-activated protein kinase signaling to regulate str-2 receptor gene expression in Caenorhabditis elegans.

In the sensory system of C. elegans, the candidate odorant receptor gene str-2 is strongly expressed in one of the two AWC neurons and weakly in both ASI neurons. Asymmetric AWC expression results from suppression of str-2 expression by a Ca2+/MAPK signaling pathway in one of the AWC neurons early in development. Here we show that the same Ca2+/MAPK pathway promotes str-2 expression in the AWC and ASI neurons together with multiple cell-autonomous and noncell-autonomous G-protein-signaling pathways. In first-stage larvae and adult animals, signals mediated by the Galpha subunits ODR-3, GPA-2, GPA-5, and GPA-6 and a Ca2+/MAPK pathway involving the Ca2+ channel subunit UNC-36, the CaMKII UNC-43, and the MAPKK kinase NSY-1 induce strong str-2 expression. Cell-specific rescue experiments suggest that ODR-3 and the Ca2+/MAPK genes function in the AWC neurons, but that GPA-5 and GPA-6 function in the AWA and ADL neurons, respectively. In Dauer larvae, the same network of genes promotes strong str-2 expression in the ASI neurons, but ODR-3 functions in AWB and ASH and GPA-6 in AWB. Our results reveal a complex signaling network, encompassing signals from multiple cells, that controls the level of receptor gene expression at different developmental stages.

Animals↗

STR polymorphisms in the population of the island of Hvar.

The aim of this study is to analyze short tandem repeat (STR) variation using data on 9 loci (D3S1358, VWA, FGA, THO1, TPOX, CSF1PO, D5S818, D13S317, D7S820) from the subpopulations of 6 villages on the island of Hvar, Croatia. The STR data help us to analyze the genetic structure of Hvar. The analysis of STR data in this study indicated genetic homogeneity among the village subpopulations on Hvar and the lack of the so-called east-west dichotomy, which had been indicated by some previous multidisciplinary anthropological studies. The observed value of GST (0.030) is most probably a consequence of high STR mutation rates, which produce a high level of within-group (village) diversity relative to total diversity of the population. The validity of STR markers in assessing genetic structure of small populations and especially in determining the relationships among closely related and reproductively isolated groups remains to be further evaluated.

Chi-Square Distribution↗

[Genetic polymorphisms of five STR loci in a Chinese Han population].

OBJECTIVE: To understand the allele structure and genetic polymorphism at five STR loci in Chinese Han population, and construct a preliminary database. METHODS: EDTA-blood specimens were collected from the unrelated individuals. The DNA samples were extracted with Chelex method and were amplified by PCR technique. The PCR products were analyzed using both the PAGE horizontal electrophoresis with discontinuous buffer system and the automated fluorescence detection approach. RESULTS: Four STRs consist of simple repeat motifs, while one STR contains a complex repeat structure. The STR polymorphisms at all of the five loci have been observed in Chinese Han population. CONCLUSION: The obtained data are beneficial to understanding the population genetics of the five STR loci in Chinese Han population. As a simple approach, the PAGE horizontal electrophoresis can be employed for typing the five STR markers.

Alleles↗

Simultaneous detection of multiple STR loci on sex chromosomes for forensic testing of sex and identity.

The forensic usefulness of X and Y chromosomal STR loci has recently been demonstrated. One quadruplex-PCR, using 2 X- and 2 Y-STRs (STRX1/HPRTB and DYS390/ DYS393), and 2 duplex-PCRs, each using an X- and a Y-STR (ARA/DYS390 and ARA/DYS393), and detection of PCR products by using an automated DNA sequencer are reported herein. This approach allows us to determine not only the sex of the donor of a sample, but also the X- and/or Y-STR genotypes of the sample. A male biological specimen yields 4 amplified products in quadruplex-PCR and 2 amplified fragments in duplex-PCRs, whereas a female biological specimen yields only 2 amplified fragments of X-STR in quadruplex-PCR and one fragment, also of X-STR, in duplex-PCRs. Our study thus provides useful information for many activities in forensic practice, such as identity testing, paternity testing, especially of deficiency cases, compilation of population data, and sex determination of a biological sample from a single PCR.

Alleles↗

Comparison of DNA extraction from blood stain and decomposed muscle in STR polymorphism analysis.

Forensic samples that are often degraded and limited in quality cause DNA typing analysis by conventional methods unsuitable. We performed a single tube-multiplex PCR on 9 STR loci (D3S1358, vWA, FGA, TH01, TPOX, CSF1PO, D5S818, D13S317, and D7S820) and the X-Y homologous gene amelogenin of DNA extracted from six week postmortem blood stain and decomposed muscle by using QIAGEN QIAamp blood or tissue procedure. An automated genetic analyzer based on fluorescent dye technology was used to detect STR allele patterns. The DNA profile of blood stain sample obtained a complete and unambiguous pattern, whereas, that of muscle DNA extracted from QIAamp tissue and Chelex plus QIAamp blood protocols showed detected STR alleles for 70 per cent and 50 per cent of all tested alleles, respectively. The degraded muscle DNA could not yield amplified products of large size STR alleles; CSF1PO, D13S317 and D7S820. However, the analysis which relied upon the PCR-based STR polymorphism analysis and automated genetic analyzer system offers an ideal strategy for forensic identification.

Autopsy↗

[STR polymorphisms in four Xinjiang ethnic groups in China].

Population genetic studies were performed in Xinjiang's Uygur, Sibe, Ozbek and Kirgiz. Allele frequency distributions were analyzed for ten loci, i.e., D3S1358, VWA, CSF1PO, FGA, THO1, TPOX, D5S818, D13S317 and D7S820 by GeneScan. The results showed that there were 66 STR alleles and 148 genotypes in Uygur; 72 STR alleles and 163 genotypes in Sibe; 65 STR alleles and 168 genotypes in Ozbek; 71 STR alleles and 191 genotypes in Kirgiz. Significant differences were identified among ethnic groups (African-American, US-Caucasian and Chinese-Oriental), but similarity was found among the four Xinjiang population. These findings indicated that the nine STR loci and Amelogenin locus were very useful for individual identification in forensic science. It is further certified that Chinese nationality is a whole.

Alleles↗

[Genetic polymorphism of 9 STR loci in Zhuang national minority of China].

Genetic distribution for nine STR loci were determined in a Chinese Guangxi Zhuang national minority group based on STR gene scan marked by fluorescence. Sixty-two alleles and 169 genotypes were observed in 91 unrelated Zhuang individuals. The corresponding gene frequency and genotype frequency were 0.0054-0.5495 and 0.0110-0.3297 respectively. The expected and observed genotype frequency of nine STR loci was in accordance with the Hardy-Weinberg equilibrium (P > 0.05). The statistical analysis of nine STR loci showed PIC (polymorphic information content) > or = 0.6088, H (heterozygosity) > or = 0.6174, DP (discrimination power) > or = 0.8028, PPE (probability of paternity exclusion) > or = 0.8165. The genetic distance figured with 9 STR genetic data showed that there were significant differences between Chinese Zhuang national minority and the American White and the American Black, and there was little difference between Zhuang national minority and the Chinese Xi'an Han. The result of clusting showed that the present data were divided into three groups: the Black, the White and the Yellow (the Chinese).

Alleles↗

The development of reduced size STR amplicons as tools for analysis of degraded DNA.

New multiplex PCR sets of commonly used short tandem repeat (STR) markers have been developed to produce PCR products that are reduced in size when compared to standard commercial STR kits. The reduction in size of these amplicons can facilitate the examination and analysis of degraded DNA evidence by improving amplification efficiency. This "miniSTR" approach will permit current forensic practitioners to use STR markers and instrumentation already present in their laboratories and to generate genotyping data that is directly comparable to reference samples and searchable through the FBI's Combined DNA Index System (CODIS) databases. This paper discusses the development of these new primer sets and presents some initial results in the analysis of degraded and aged DNA samples. A method for removal of problematic fluorescent dye artifacts is also described. Comparison studies in over 100 samples have verified that these miniSTR primers can provide fully concordant results to commercial STR kits and can provide improved signal from degraded DNA specimens. These miniplex sets should prove valuable in the analysis of samples where allele dropout and reduced sensitivity of larger STR alleles occurs.

Blotting, Southern↗

Validation and implementation of the PowerPlex 16 BIO System STR multiplex for forensic casework.

The PowerPlex 16 BIO multiplex short tandem repeat (STR) system contains the 13 CODIS loci (FGA, TPOX, D8S1179, vWA, D18S51, D21S11, TH01, D3S1358, CSF1PO, D16S539, D7S820, D13S317, and DS5S818), plus two pentanucleotide repeat loci (Penta D and Penta E) and the sex-identifying locus. Amelogenin. The PowerPlex 16 BIO System is optimized for use with the Hitachi FMBIO gel imaging systems. A consortium of seven independent laboratories collaborated to perform the studies defined by the FBI standards for performing a developmental validation, including the evaluation of sample concordance, percent stutter determination, nonprobative casework, precision, sensitivity, mixture determination, effect of substrates, the impact of environmental insults, and species specificity. All samples tested for concordance were consistent except for one sample from the Virginia Division of Forensic Science database that displayed discordance at D13S317, a locus whose primer sequence was altered. Stutter values were comparable to those of other STR multiplex systems, the precision was comparable to other multiplexes analyzed by gel electrophoresis, the DNA profiles were unchanged by the substrate upon which the blood samples were placed, and the nonprobative casework samples re-typed for the PowerPlex 16 BIO System were consistent with previous typing results. When greater than 0.125 ng of DNA was placed into the PowerPlex 16 BIO System amplification reaction, a full profile was generated by all laboratories. The mixture study results were comparable to those reported for other multiplex systems, the environmental study demonstrated a loss of larger molecular weight loci when samples were incubated at elevated temperatures for a prolonged period of time, and the only notable cross species hybridization was observed with primate DNA samples. This extensive validation work performed demonstrates that the PowerPlex 16 BIO System provides STR data of a quality comparable with other PowerPlex STR multiplex kits as well as other widely used STR multiplexes and is thus suitable for evidentiary casework analysis as well as database sample profiling.

Alleles↗

[Rapid molecular diagnosis of trisomy 21 using the PCR-STR-SSCP technique].

OBJECTIVE: Developing a PCR-based method to diagnose trisomy 21 directly by alternative detection of the SSCP profiles of the STR fragments amplified. METHODS: The DNA samples from 19 trisomy 21 patients, 3 at-risk fetuses of trisomy 21 and a total of 44 samples from their parents as controls were drawn for this study, in which the trisomy 21 was determined by G-band karytyping. Two polymorphic STR at D21S11 and D21S1411 served as the gene markers, and two separate PCR-amplified primers were designed.The STR-amplicons denatured were subjected to polyacrylamide gel electrophoresis for SSCP analysis. RESULTS: This assay can identify three STR fragments representing parents' chromosome 21 by detecting the electrophoresis separation profiles of PCR-amplified fragments. With the use of this assay, the authors analyzed the 22 cases of trisomy 21;accurate diagnoses were made except for one case in which the electrophoresis pattern at D21S11 site could not present the diagnostic information because of the homozygous state of this family. The 3 at-risk fetuses were found to be the trisomy 21 patients, followed by confirmation of the results by G-band karytyping of aborted samples. CONCLUSION: The present PCR-STR-SSCP assay can be applied as a simple, rapid and accurate method in the prenatal diagnosis and genetic screening of trisomy 21.

Down Syndrome↗