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Absolute quantification of genetically modified MON810 maize (Zea mays L.) by digital polymerase chain reaction

机译:基因改性MON810玉米(ZEA Mays L.)的绝对量化通过数字聚合酶链反应

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摘要

Quantitative analysis of genetically modified (GM) foods requires estimation of the amount of the transgenic event relative to an endogenous gene. Regulatory authorities in the European Union (EU) have defined the labelling threshold for GM food on the copy number ratio between the transgenic event and an endogenous gene. Real-time polymerase chain reaction (PCR) is currently being used for quantification of GM organisms (GMOs). Limitations in real-time PCR applications to detect very low number of DNA targets has led to new developments such as the digital PCR (dPCR) which allows accurate measurement of DNA copies without the need for a reference calibrator. In this paper, the amount of maize MON810 and hmg copies present in a DNA extract from seed powders certified for their mass content and for their copy number ratio was measured by dPCR. The ratio of these absolute copy numbers determined by dPCR was found to be identical to the ratios measured by real-time quantitative PCR (qPCR) using a plasmid DNA calibrator. These results indicate that both methods could be applied to determine the copy number ratio in MON810. The reported values were in agreement with estimations from a model elaborated to convert mass fractions into copy number fractions in MON810 varieties. This model was challenged on two MON810 varieties used for the production of MON810 certified reference materials (CRMs) which differ in the parental origin of the introduced GM trait. We conclude that dPCR has a high metrological quality and can be used for certifying GM CRMs in terms of DNA copy number ratio.
机译:转基因(GM)食品的定量分析需要估计相对于内源基因的转基因事件的量。欧洲联盟(欧盟)的监管机构已定义转基因食品对转基因事件与内源基因之间的拷贝数比的标记阈值。实时聚合酶链式反应(PCR)目前用于定量转基因生物(GMOS)。实时PCR应用中的限制以检测到非常低的DNA靶标导致了诸如数字PCR(DPCR)的新发展,其允许精确测量DNA拷贝,而无需参考校准器。在本文中,通过DPCR测量了由其质量含量认证的种子粉末的DNA提取物中的玉米MON810和HMG拷贝的量进行DPCR。发现DPCR确定的这些绝对拷贝数的比率与使用质粒DNA校准器通过实时定量PCR(QPCR)测量的比率相同。这些结果表明,两种方法都可以应用于确定MON810中的拷贝数比。报告的价值观与阐述将质量分数转化为MON810品种的拷贝数级分的模型的估计值一致。该模型对用于生产Mon810认证的参考资料(CRM)的两种Mon810品种挑战,这些产品在介绍的通用汽车特质的父母来源中不同。我们得出结论,DPCR具有高的计量质量,可用于在DNA拷贝数比方面证明GM CRM。

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