Kimpton C, Fisher D, Watson S, Adams M, Urquhart A, Lygo J, Gill P
Central Research and Support Establishment, Forensic Science Service, Birmingham, UK.
Int J Legal Med. 1994;106(6):302-11. doi: 10.1007/BF01224776.
We have examined the performance and reproducibility of an automated DNA profiling system which is based on the multiplex amplification of 4 tetrameric STR loci-HUMVWFA31/A. HUMTH01, HUMF13A1 and HUMFES/FPS. The system was able to type 100 pg of purified, undegraded, genomic DNA. At lower concentrations of DNA (below 100 pg), allelec drop-out occurred due to stochastic differences in allele copy number. Minor variation of individual PCR reagent concentrations or cycling temperatures did not result in a significant effect on the efficiency of amplification of any of the 4 loci in the quadruplex system. More substantial variation of reagent concentrations or cycling temperatures outside the optimum range of the system resulted in a reduction or complete loss of signal for one or more loci. This was also observed at high ionic strength or extreme pH. However, under all reagent concentrations and conditions studied, no artefact bands that could potentially result in the mistyping of a sample were apparent within the read region (130-240 bases) of the gel. Evaluation of both native and denaturing polyacrylamide gels revealed that, although native gels displayed faster run times, the sizing precision of such gels for certain STR loci was lower than that of denaturing gels. Also, artefact bands may be present within the read region of native gels. In conclusion the quadruplex amplification system described, coupled with automated fluorescence-based detection on denaturing polyacrylamide gels, appeared to be a robust and reliable system for individual identification.
我们检测了一种自动化DNA分型系统的性能和可重复性,该系统基于4个四聚体STR基因座(HUMVWFA31/A、HUMTH01、HUMF13A1和HUMFES/FPS)的多重扩增。该系统能够对100 pg纯化的、未降解的基因组DNA进行分型。在较低的DNA浓度(低于100 pg)下,由于等位基因拷贝数的随机差异会出现等位基因丢失。单个PCR试剂浓度或循环温度的微小变化不会对四重系统中4个基因座中任何一个的扩增效率产生显著影响。在系统最佳范围之外,试剂浓度或循环温度的更显著变化会导致一个或多个基因座的信号减弱或完全丧失。在高离子强度或极端pH条件下也观察到这种情况。然而,在所研究的所有试剂浓度和条件下,在凝胶的读取区域(130 - 240个碱基)内未出现可能导致样本误分型的人为条带。对天然聚丙烯酰胺凝胶和变性聚丙烯酰胺凝胶的评估表明,虽然天然凝胶的运行时间较短,但对于某些STR基因座,这种凝胶的大小测定精度低于变性凝胶。此外,天然凝胶的读取区域可能存在人为条带。总之,所述的四重扩增系统,结合基于变性聚丙烯酰胺凝胶的自动化荧光检测,似乎是一种用于个体识别的强大且可靠的系统。