Rønning Sissel B, Berdal Knut G, Andersen Charlotte Bøydler, Holst-Jensen Arne
Section for Feed and Food Microbiology, National Veterinary Institute, Ullevålsveien 68, Post Office Box 8156 Dep., 0033 Oslo, Norway.
J Agric Food Chem. 2006 Feb 8;54(3):682-7. doi: 10.1021/jf052328n.
We report the development of a duplex real-time Polymerase Chain Reaction (PCR) for the simultaneous detection and quantification of wheat- and barley-derived DNA. We used a single primer pair to amplify the single-copy gene PKABA1 from wheat and barley, using minor-groove-binding probes to distinguish between the two cereals. The assay was fully specific, and different wheat and barley cultivars exhibited similar Ct values, indicating stability across cultivars with respect to allelic and copy number composition. The limits of detection were 5 and 10 PCR-forming units for wheat and barley, respectively, making the duplex assay as sensitive as other singleplex reference gene systems published. We were able to detect both wheat and barley simultaneously in real food samples, and the duplex assay is considered to be suitable as an endogenous reference gene system for the detection and quantification of wheat and barley in genetically modified organisms (GMO) and other food and feed analyses.
我们报告了一种用于同时检测和定量小麦和大麦来源DNA的双重实时聚合酶链反应(PCR)方法的开发。我们使用一对引物扩增小麦和大麦中的单拷贝基因PKABA1,并使用小沟结合探针区分这两种谷物。该检测方法具有高度特异性,不同的小麦和大麦品种表现出相似的Ct值,表明在等位基因和拷贝数组成方面,该方法在不同品种间具有稳定性。小麦和大麦的检测限分别为5个和10个PCR形成单位,这使得该双重检测方法与已发表的其他单重参考基因系统一样灵敏。我们能够在实际食品样品中同时检测到小麦和大麦,并且该双重检测方法被认为适合作为一种内源性参考基因系统,用于转基因生物(GMO)以及其他食品和饲料分析中对小麦和大麦的检测和定量。