Selection of Suitable DNA Extraction Methods for Genetically Modified Maize 3272, and Development and Evaluation of an Event-Specific Quantitative PCR Method for 3272.

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.

[1]  Clive James,et al.  Global status of commercialized biotech/GM crops: 2006. , 2006 .

[2]  Junichi Mano,et al.  Development and evaluation of event-specific quantitative PCR method for genetically modified soybean A2704-12. , 2011, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan.

[3]  F. E. Grubbs Procedures for Detecting Outlying Observations in Samples , 1969 .

[4]  F. E. Grubbs Sample Criteria for Testing Outlying Observations , 1950 .

[5]  高畠 令王奈,et al.  遺伝子組換え(GM)ダイズ系統A2704-12の系統特異的定量検知法の開発および性能指標の評価 , 2011 .

[6]  A. Hino Safety Assessment and Public Concerns for Genetically Modified Food Products: The Japanese Experience , 2002, Toxicologic pathology.

[7]  J. Mano,et al.  [Development and validation of event-specific quantitative PCR method for genetically modified maize LY038]. , 2013, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan.

[8]  J. Short,et al.  A Novel, High Performance Enzyme for Starch Liquefaction , 2002, The Journal of Biological Chemistry.

[9]  H. Akiyama,et al.  Validation of real-time PCR analyses for line-specific quantitation of genetically modified maize and soybean using new reference molecules. , 2002, Journal of AOAC International.

[10]  Yukihiro Goda,et al.  Novel reference molecules for quantitation of genetically modified maize and soybean. , 2002, Journal of AOAC International.

[11]  W. G. Cochran The distribution of the largest of a set of estimated variances as a fraction of their total , 1941 .

[12]  H. Akiyama,et al.  Evaluation of modified PCR quantitation of genetically modified maize and soybean using reference molecules: interlaboratory study. , 2009, Journal of AOAC International.

[13]  J. Short,et al.  A novel, high performance enzyme for starch liquefaction. Discovery and optimization of a low pH, thermostable alpha-amylase. , 2002, The Journal of biological chemistry.

[14]  J. Mano,et al.  Development and validation of an event-specific quantitative PCR method for genetically modified maize MIR162. , 2014, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan.