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开发一种定性、多重实时 PCR 试剂盒,用于筛选转基因生物(GMOs)。

Development of a qualitative, multiplex real-time PCR kit for screening of genetically modified organisms (GMOs).

机构信息

BIOTECON Diagnostics GmbH, Hermannswerder 17, 14473 Potsdam, Germany.

出版信息

Anal Bioanal Chem. 2010 Mar;396(6):2043-54. doi: 10.1007/s00216-009-3149-2. Epub 2009 Oct 2.

Abstract

The number of commercially available genetically modified organisms (GMOs) and therefore the diversity of possible target sequences for molecular detection techniques are constantly increasing. As a result, GMO laboratories and the food production industry currently are forced to apply many different methods to reliably test raw material and complex processed food products. Screening methods have become more and more relevant to minimize the analytical effort and to make a preselection for further analysis (e.g., specific identification or quantification of the GMO). A multiplex real-time PCR kit was developed to detect the 35S promoter of the cauliflower mosaic virus, the terminator of the nopaline synthase gene of Agrobacterium tumefaciens, the 35S promoter from the figwort mosaic virus, and the bar gene of the soil bacterium Streptomyces hygroscopicus as the most widely used sequences in GMOs. The kit contains a second assay for the detection of plant-derived DNA to control the quality of the often processed and refined sample material. Additionally, the plant-specific assay comprises a homologous internal amplification control for inhibition control. The determined limits of detection for the five assays were 10 target copies/reaction. No amplification products were observed with DNAs of 26 bacterial species, 25 yeasts, 13 molds, and 41 not genetically modified plants. The specificity of the assays was further demonstrated to be 100% by the specific amplification of DNA derived from reference material from 22 genetically modified crops. The applicability of the kit in routine laboratory use was verified by testing of 50 spiked and unspiked food products. The herein described kit represents a simple and sensitive GMO screening method for the reliable detection of multiple GMO-specific target sequences in a multiplex real-time PCR reaction.

摘要

商业化的转基因生物(GMO)数量不断增加,因此,分子检测技术的可能目标序列的多样性也在不断增加。结果,GMO 实验室和食品生产行业目前被迫应用许多不同的方法来可靠地测试原材料和复杂加工食品。筛选方法变得越来越重要,可以最大限度地减少分析工作量,并对进一步分析进行预选(例如,对 GMO 进行特异性鉴定或定量)。开发了一种多重实时 PCR 试剂盒,用于检测花椰菜花叶病毒的 35S 启动子、根癌农杆菌的胭脂碱合成酶基因的终止子、瓜叶病毒的 35S 启动子和土壤细菌吸水链霉菌的 bar 基因,这些是 GMO 中最广泛使用的序列。该试剂盒包含第二个检测植物源性 DNA 的检测,以控制经常加工和精制的样品材料的质量。此外,植物特异性检测还包含用于抑制控制的同源内部扩增对照。五种检测方法的确定检测限为 10 个目标拷贝/反应。用 26 种细菌、25 种酵母、13 种霉菌和 41 种非转基因植物的 DNA 观察不到扩增产物。通过对 22 种转基因作物参考物质的特异性扩增,进一步证明了该检测方法的特异性为 100%。通过对 50 个添加和未添加的食品进行测试,验证了试剂盒在常规实验室使用中的适用性。本文描述的试剂盒代表了一种简单而灵敏的 GMO 筛选方法,用于在多重实时 PCR 反应中可靠地检测多个 GMO 特异性目标序列。

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