Royal Canadian Mounted Police, Forensic Science & Identification Services, National Services and Research, 1200 Vanier Parkway, Ottawa, ON, Canada.
Forensic Sci Int Genet. 2012 Jan;6(1):47-57. doi: 10.1016/j.fsigen.2011.01.011. Epub 2011 Mar 11.
The goal of this work was to optimize and validate a fast amplification protocol for the multiplex amplification of the STR loci included in AmpFlSTR(®) Profiler Plus(®) to expedite human DNA identification. By modifying the cycling conditions and by combining the use of a DNA polymerase optimized for high speed PCR (SpeedSTAR™ HS) and a more efficient thermal cycler instrument (Bio-RAD C1000™), we were able to reduce the amplification process from 4h to 26 min. No modification to the commercial AmpFlSTR(®) Profiler Plus(®) primer mix was required. When compared to the current Royal Canadian Mounted Police (RCMP) amplification protocol, no differences with regards to specificity, sensitivity, heterozygote peak height ratios and overall profile balance were noted. Moreover, complete concordance was obtained with profiles previously generated with the standard amplification protocol and minor alleles in mixture samples were reliably typed. An increase in n-4 stutter ratios (2.2% on average for all loci) was observed for profiles amplified with the fast protocol compared to the current procedure. Our results document the robustness of this rapid amplification protocol for STR profiling using the AmpFlSTR(®) Profiler Plus(®) primer set and demonstrate that comparable data can be obtained in substantially less time. This new approach could provide an alternative option to current multiplex STR typing amplification protocols in order to increase throughput or expedite time-sensitive cases.
本研究旨在优化和验证 AmpFlSTR®Profiler Plus®中包含的 STR 基因座多重扩增的快速扩增方案,以加速人类 DNA 鉴定。通过修改循环条件,并结合使用专为高速 PCR 优化的 DNA 聚合酶(SpeedSTAR™HS)和更高效的热循环仪(Bio-RAD C1000™),我们能够将扩增过程从 4 小时缩短至 26 分钟。无需对商业 AmpFlSTR®Profiler Plus®引物混合物进行任何修改。与当前的加拿大皇家骑警(RCMP)扩增方案相比,在特异性、灵敏度、杂合峰高比和总体谱平衡方面没有差异。此外,与使用标准扩增方案生成的图谱完全一致,并且可以可靠地对混合样本中的次要等位基因进行分型。与当前程序相比,使用快速方案扩增的图谱中 n-4 短重复序列比值(所有基因座的平均值为 2.2%)增加。本研究结果证明了这种使用 AmpFlSTR®Profiler Plus®引物组进行 STR 分析的快速扩增方案的稳健性,并表明可以在大大缩短的时间内获得可比的数据。这种新方法可以为当前的多重 STR 分型扩增方案提供替代方案,以增加通量或加快时间敏感的案件。