首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Sensitive and simultaneous analysis of five transgenic maizes using multiplex polymerase chain reaction, capillary gel electrophoresis, and laser-induced fluorescence.
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Sensitive and simultaneous analysis of five transgenic maizes using multiplex polymerase chain reaction, capillary gel electrophoresis, and laser-induced fluorescence.

机译:使用多重聚合酶链反应,毛细管凝胶电泳和激光诱导的荧光灵敏地同时分析五种转基因玉米。

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摘要

The benefits of using multiplex polymerase chain reaction (PCR) followed by capillary gel electrophoresis with laser-induced fluorescence (CGE-LIF) for the simultaneous detection of five transgenic maizes (Bt11, T25, MON810, GA21, and Bt176) are demonstrated. The method uses a hexaplex PCR protocol to amplify the five mentioned transgenic amplicons plus the zein gene used as reference, followed by a CGE-LIF method to analyze the six DNA fragments. CGE-LIF was demonstrated very useful and informative for optimizing multiplex PCR parameters such as time extension, PCR buffer concentration and primers concentration. The method developed is highly sensitive and allows the simultaneous detection in a single run of percentages of transgenic maize as low as 0.054% of Bt11, 0.057% of T25, 0.036% of MON810, 0.064% of GA21, and 0.018% of Bt176 in flour obtaining signals still far from the detection limit (namely, the signal/noise ratios for the corresponding DNA peaks were 41, 124, 98, 250, 252, and 473, respectively). These percentages are well below the minimum threshold marked by the European Regulation for transgenic food labeling (i.e., 0.5-0.9%). A study on the reproducibility of the multiplex PCR-CGE-LIF procedure was also performed. Thus, values of RSD lower than 0.67 and 6.80% were obtained for migration times and corrected peak areas, respectively, for the same sample and three different days (n = 12). On the other hand, the reproducibility of the whole procedure, including four different multiplex PCR amplifications, was determined to be better than 0.66 and 23.3% for migration times and corrected peak areas, respectively. Agarose gel electrophoresis (AGE) and CGE-LIF were compared in terms of resolution and sensitivity for detecting PCR products, demonstrating that CGE-LIF can solve false positives induced by artifacts from the multiplex PCR reaction that could not be addressed by AGE. Moreover, CGE-LIF provides better resolution and sensitivity. To our knowledge, these results demonstrate for thefirst time that multiplex PCR-CGE-LIF is a solid alternative to determine multiple genetically modified organisms in maize flours in a single run.
机译:展示了使用多重聚合酶链反应(PCR)进行毛细管凝胶电泳和激光诱导荧光(CGE-LIF)来同时检测五种转基因玉米(Bt11,T25,MON810,GA21和Bt176)的好处。该方法使用六重PCR方案扩增五个提到的转基因扩增子以及用作参考的玉米醇溶蛋白基因,然后使用CGE-LIF方法分析六个DNA片段。事实证明,CGE-LIF对于优化多重PCR参数(例如时间延长,PCR缓冲液浓度和引物浓度)非常有用且具有参考价值。开发的方法具有很高的灵敏度,可以同时检测面粉中低至Bt11的0.054%,T25的0.057%,MON810的0.036%,GA21的0.064%和Bt176的0.018%的百分比的转基因玉米获得仍然远离检测极限的信号(即,相应DNA峰的信噪比分别为41、124、98、250、252和473)。这些百分比远低于欧洲法规对转基因食品标签规定的最低阈值(即0.5-0.9%)。还对多重PCR-CGE-LIF程序的可重复性进行了研究。因此,对于相同的样品和三个不同的天(n = 12),分别获得的迁移时间和校正峰面积的RSD值均低于0.67和6.80%。另一方面,整个过程(包括四个不同的多重PCR扩增)的重现性分别确定为优于迁移时间和校正峰面积的0.66%和23.3%。琼脂糖凝胶电泳(AGE)和CGE-LIF在检测PCR产物的分辨率和灵敏度方面进行了比较,表明CGE-LIF可以解决由AGE无法解决的多重PCR反应造成的假阳性。此外,CGE-LIF可提供更好的分辨率和灵敏度。据我们所知,这些结果首次证明了多重PCR-CGE-LIF是一次测定玉米粉中多种转基因生物的可靠选择。

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