We investigated four X chromosomal short tandem repeat (X-STR) markers (DXS10079, DXS10103, DXS10146, and DXS10148) in 450 unrelated Koreans (300 males and 150 females), and evaluated their forensic usage in relation to the four X-STR linkage groups. Forensic statistical parameters for these X-STR markers indicated that they are highly informative for forensic application in Koreans. No significant deviations from Hardy-Weinberg equilibrium were observed in any of the four X-STR markers. In addition, we present haplotypes and their frequency data for four linkage groups each comprised of three X-STRs (DXS10148-DXS10135-DXS8378, DXS7132-DXS10079-DXS10074, DXS10103-HPRTB-DXS10101, and DXS10146-DXS10134-DXS7423) in 300 males. Haplotype diversity values in the four linkage trios were all higher than 0.98, and 77.1% of all haplotypes showed a frequency less than 0.01. Therefore, the four closely-linked X-STR trios will contribute to complex kinship testing in Koreans.
Since the Korean criminal DNA database was launched in 2010, we have focused on establishing an automated DNA database profiling system that analyzes short tandem repeat loci in a high-throughput and cost-effective manner. We established a DNA database profiling system without DNA purification using a direct PCR buffer system. The quality of direct PCR procedures was compared with that of conventional PCR system under their respective optimized conditions. The results revealed not only perfect concordance but also an excellent PCR success rate, good electropherogram quality, and an optimal intra/inter-loci peak height ratio. In particular, the proportion of DNA extraction required due to direct PCR failure could be minimized to <3%. In conclusion, the newly developed direct PCR system can be adopted for automated DNA database profiling systems to replace or supplement conventional PCR system in a time- and cost-saving manner.
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