Takabatake Reona, Masubuchi Tomoko, Futo Satoshi, Minegishi Yasutaka, Noguchi Akio, Kondo Kazunari, Teshima Reiko, Kurashima Takeyo, Mano Junichi, Kitta Kazumi
Analytical Science Division, National Food Research Institute, National Agriculture and Food Research Organization.
Shokuhin Eiseigaku Zasshi. 2016;57(1):1-6. doi: 10.3358/shokueishi.57.1.
A novel real-time PCR-based analytical method was developed for the event-specific quantification of a genetically modified (GM) maize, 3272. We first attempted to obtain genome DNA from this maize using a DNeasy Plant Maxi kit and a DNeasy Plant Mini kit, which have been widely utilized in our previous studies, but DNA extraction yields from 3272 were markedly lower than those from non-GM maize seeds. However, lowering of DNA extraction yields was not observed with GM quicker or Genomic-tip 20/G. We chose GM quicker for evaluation of the quantitative method. We prepared a standard plasmid for 3272 quantification. The conversion factor (Cf), which is required to calculate the amount of a genetically modified organism (GMO), was experimentally determined for two real-time PCR instruments, the Applied Biosystems 7900HT (the ABI 7900) and the Applied Biosystems 7500 (the ABI7500). The determined Cf values were 0.60 and 0.59 for the ABI 7900 and the ABI 7500, respectively. To evaluate the developed method, a blind test was conducted as part of an interlaboratory study. The trueness and precision were evaluated as the bias and reproducibility of the relative standard deviation (RSDr). The determined values were similar to those in our previous validation studies. The limit of quantitation for the method was estimated to be 0.5% or less, and we concluded that the developed method would be suitable and practical for detection and quantification of 3272.
开发了一种基于实时荧光定量PCR的分析方法,用于对转基因玉米3272进行事件特异性定量分析。我们首先尝试使用DNeasy Plant Maxi试剂盒和DNeasy Plant Mini试剂盒从该玉米中提取基因组DNA,这两种试剂盒在我们之前的研究中已被广泛使用,但3272的DNA提取产量明显低于非转基因玉米种子。然而,使用GM quicker或Genomic-tip 20/G时未观察到DNA提取产量降低。我们选择GM quicker来评估定量方法。我们制备了用于3272定量的标准质粒。针对两种实时荧光定量PCR仪器,即Applied Biosystems 7900HT(ABI 7900)和Applied Biosystems 7500(ABI7500),通过实验确定了计算转基因生物(GMO)数量所需的转换因子(Cf)。ABI 7900和ABI 7500的Cf值分别为0.60和0.59。为了评估所开发的方法,作为实验室间研究的一部分进行了盲测。以相对标准偏差(RSDr)的偏差和重现性来评估准确性和精密度。测定值与我们之前的验证研究中的值相似。该方法的定量限估计为0.5%或更低,我们得出结论,所开发的方法适用于3272的检测和定量分析,且具有实用性。