Department of Biotechnology and Systems Biology, National Institute of Biology, Ljubljana, Slovenia.
PLoS One. 2013 May 2;8(5):e62583. doi: 10.1371/journal.pone.0062583. Print 2013.
In this study, the applicability of droplet digital PCR (ddPCR) for routine analysis in food and feed samples was demonstrated with the quantification of genetically modified organisms (GMOs). Real-time quantitative polymerase chain reaction (qPCR) is currently used for quantitative molecular analysis of the presence of GMOs in products. However, its use is limited for detecting and quantifying very small numbers of DNA targets, as in some complex food and feed matrices. Using ddPCR duplex assay, we have measured the absolute numbers of MON810 transgene and hmg maize reference gene copies in DNA samples. Key performance parameters of the assay were determined. The ddPCR system is shown to offer precise absolute and relative quantification of targets, without the need for calibration curves. The sensitivity (five target DNA copies) of the ddPCR assay compares well with those of individual qPCR assays and of the chamber digital PCR (cdPCR) approach. It offers a dynamic range over four orders of magnitude, greater than that of cdPCR. Moreover, when compared to qPCR, the ddPCR assay showed better repeatability at low target concentrations and a greater tolerance to inhibitors. Finally, ddPCR throughput and cost are advantageous relative to those of qPCR for routine GMO quantification. It is thus concluded that ddPCR technology can be applied for routine quantification of GMOs, or any other domain where quantitative analysis of food and feed samples is needed.
在本研究中,通过对转基因生物(GMO)的定量,证明了液滴数字 PCR(ddPCR)在食品和饲料样品常规分析中的适用性。实时定量聚合酶链反应(qPCR)目前用于产品中 GMO 存在的定量分子分析。然而,由于在一些复杂的食品和饲料基质中,其仅能检测和定量非常少量的 DNA 靶标,因此其用途受到限制。本研究使用 ddPCR 双管检测法,测量了 MON810 转基因和 hmg 玉米参照基因在 DNA 样本中的绝对拷贝数。并确定了该检测方法的关键性能参数。结果表明,ddPCR 系统无需校准曲线即可提供目标的精确绝对和相对定量。ddPCR 检测法的灵敏度(五个目标 DNA 拷贝)与单个 qPCR 检测法和腔室数字 PCR(cdPCR)方法相当。它提供了四个数量级以上的动态范围,大于 cdPCR。此外,与 qPCR 相比,ddPCR 检测法在低靶浓度下具有更好的重复性,并且对抑制剂的耐受性更强。最后,ddPCR 的通量和成本相对于 qPCR 具有优势,可用于常规 GMO 定量。因此,可以得出结论,ddPCR 技术可用于 GMO 的常规定量,或任何其他需要对食品和饲料样品进行定量分析的领域。