Division of Biosafety and Biotechnology, Scientific Institute of Public Health, J. Wytsmanstreet 14, 1050 Brussels, Belgium.
Anal Bioanal Chem. 2010 Mar;396(6):2165-73. doi: 10.1007/s00216-009-3346-z. Epub 2009 Dec 17.
Owing to the labelling requirements of food and feed products containing materials derived from genetically modified organisms, quantitative detection methods have to be developed for this purpose, including the necessary certified reference materials and calibrator standards. To date, for most genetically modified organisms authorized in the European Union, certified reference materials derived from seed powders are being developed. Here, an assessment has been made on the feasibility of using plasmid DNA as an alternative calibrator for the quantitative detection of genetically modified organisms. For this, a dual-target plasmid, designated as pJANUS-02-001, comprising part of a junction region of genetically modified soybean event GTS-40-3-2 and the endogenous soybean-specific lectin gene was constructed. The dynamic range, efficiency and limit of detection for the soybean event GTS-40-3-2 real-time quantitative polymerase chain reaction (Q-PCR) system described by Terry et al. (J AOAC Int 85(4):938-944, 2002) were shown to be similar for in house produced homozygous genomic DNA from leaf tissue of soybean event GTS-40-3-2 and for plasmid pJANUS-02-001 DNA backgrounds. The performance of this real-time Q-PCR system using both types of DNA templates as calibrator standards in quantitative DNA analysis was further assessed in an interlaboratory trial. Statistical analysis and fuzzy-logic-based interpretation were performed on critical method parameters (as defined by the European Network of GMO Laboratories and the Community Reference Laboratory for GM Food and Feed guidelines) and demonstrated that the plasmid pJANUS-02-001 DNA represents a valuable alternative to genomic DNA as a calibrator for the quantification of soybean event GTS-40-3-2 in food and feed products.
由于食品和饲料产品中含有源自转基因生物体的材料的标签要求,因此必须为此开发定量检测方法,包括必要的认证参考材料和校准标准。迄今为止,对于欧盟批准的大多数转基因生物体,正在开发源自种子粉末的认证参考材料。在这里,评估了使用质粒 DNA 作为替代校准物进行转基因生物体定量检测的可行性。为此,构建了一个双靶质粒,命名为 pJANUS-02-001,包含转基因大豆事件 GTS-40-3-2 的连接区的一部分和内源性大豆特异性凝集素基因。与 Terry 等人描述的大豆事件 GTS-40-3-2 实时定量聚合酶链反应(Q-PCR)系统的动态范围、效率和检测限(J AOAC Int 85(4):938-944, 2002)相似,来自大豆事件 GTS-40-3-2 的叶片组织的纯合基因组 DNA 和质粒 pJANUS-02-001 DNA 背景。在实验室间试验中,进一步评估了使用这两种 DNA 模板作为校准标准进行定量 DNA 分析的实时 Q-PCR 系统的性能。对关键方法参数(由欧洲转基因生物实验室网络和社区参考实验室的转基因食品和饲料指南定义)进行了统计分析和基于模糊逻辑的解释,并表明质粒 pJANUS-02-001 DNA 是作为食品和饲料产品中大豆事件 GTS-40-3-2 定量的校准物替代基因组 DNA 的有价值的替代物。