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通过各种等温扩增技术检测转基因玉米中的35S启动子:一种实用方法。

Detection of the 35S promoter in transgenic maize via various isothermal amplification techniques: a practical approach.

作者信息

Zahradnik Celine, Kolm Claudia, Martzy Roland, Mach Robert L, Krska Rudolf, Farnleitner Andreas H, Brunner Kurt

机构信息

Institute of Chemical Engineering, Center for Analytical Chemistry, IFA-Tulln, Vienna University of Technology, Konrad Lorenz Str. 20, 3430, Tulln, Austria.

出版信息

Anal Bioanal Chem. 2014 Nov;406(27):6835-42. doi: 10.1007/s00216-014-7889-2. Epub 2014 Jun 1.

Abstract

In 2003 the European Commission introduced a 0.9% threshold for food and feed products containing genetically modified organism (GMO)-derived components. For commodities containing GMO contents higher than this threshold, labelling is mandatory. To provide a DNA-based rapid and simple detection method suitable for high-throughput screening of GMOs, several isothermal amplification approaches for the 35S promoter were tested: strand displacement amplification, nicking-enzyme amplification reaction, rolling circle amplification, loop-mediated isothermal amplification (LAMP) and helicase-dependent amplification (HDA). The assays developed were tested for specificity in order to distinguish between samples containing genetically modified (GM) maize and non-GM maize. For those assays capable of this discrimination, tests were performed to determine the lower limit of detection. A false-negative rate was determined to rule out whether GMO-positive samples were incorrectly classified as GMO-negative. A robustness test was performed to show reliable detection independent from the instrument used for amplification. The analysis of three GM maize lines showed that only LAMP and HDA were able to differentiate between the GMOs MON810, NK603, and Bt11 and non-GM maize. Furthermore, with the HDA assay it was possible to realize a detection limit as low as 0.5%. A false-negative rate of only 5% for 1% GM maize for all three maize lines shows that HDA has the potential to be used as an alternative strategy for the detection of transgenic maize. All results obtained with the LAMP and HDA assays were compared with the results obtained with a previously reported real-time PCR assay for the 35S promoter in transgenic maize. This study presents two new screening assays for detection of the 35S promoter in transgenic maize by applying the isothermal amplification approaches HDA and LAMP.

摘要

2003年,欧盟委员会针对含有转基因生物(GMO)衍生成分的食品和饲料产品设定了0.9%的阈值。对于转基因成分含量高于此阈值的商品,必须进行标签标注。为了提供一种基于DNA的快速、简单的检测方法,适用于转基因生物的高通量筛选,对35S启动子的几种等温扩增方法进行了测试:链置换扩增、切口酶扩增反应、滚环扩增、环介导等温扩增(LAMP)和解旋酶依赖性扩增(HDA)。对所开发的检测方法进行了特异性测试,以区分含有转基因玉米和非转基因玉米的样品。对于能够进行这种区分的检测方法,进行了测试以确定检测下限。确定了假阴性率,以排除转基因阳性样品被错误分类为转基因阴性的情况。进行了稳健性测试,以表明检测结果可靠,与用于扩增的仪器无关。对三种转基因玉米品系的分析表明,只有LAMP和HDA能够区分转基因品系MON810、NK603和Bt11与非转基因玉米。此外,使用HDA检测方法可以实现低至0.5%的检测限。对于所有三种玉米品系,1%转基因玉米的假阴性率仅为5%,这表明HDA有潜力用作检测转基因玉米的替代策略。将LAMP和HDA检测方法获得的所有结果与之前报道的用于转基因玉米中35S启动子的实时PCR检测结果进行了比较。本研究通过应用等温扩增方法HDA和LAMP,提出了两种用于检测转基因玉米中35S启动子的新筛选检测方法。

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