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基于超灵敏单荧光标记探针介导的单通用引物多重微滴数字聚合酶链式反应的高通量基因修饰生物筛查

Ultrasensitive Single Fluorescence-Labeled Probe-Mediated Single Universal Primer-Multiplex-Droplet Digital Polymerase Chain Reaction for High-Throughput Genetically Modified Organism Screening.

机构信息

Laboratory of Food Safety, College of Food Science and Nutritional Engineering , China Agricultural University , Beijing 100083 , China.

Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science & Nutritional Engineering , China Agricultural University , Beijing 100083 , China.

出版信息

Anal Chem. 2018 May 1;90(9):5586-5593. doi: 10.1021/acs.analchem.7b03974. Epub 2018 Apr 19.

Abstract

As genetically modified (GM) technology develops and genetically modified organisms (GMOs) become more available, GMOs face increasing regulations and pressure to adhere to strict labeling guidelines. A singleplex detection method cannot perform the high-throughput analysis necessary for optimal GMO detection. Combining the advantages of multiplex detection and droplet digital polymerase chain reaction (ddPCR), a single universal primer-multiplex-ddPCR (SUP-M-ddPCR) strategy was proposed for accurate broad-spectrum screening and quantification. The SUP increases efficiency of the primers in PCR and plays an important role in establishing a high-throughput, multiplex detection method. Emerging ddPCR technology has been used for accurate quantification of nucleic acid molecules without a standard curve. Using maize as a reference point, four heterologous sequences ( 35S, NOS, NPTII, and PAT) were selected to evaluate the feasibility and applicability of this strategy. Surprisingly, these four genes cover more than 93% of the transgenic maize lines and serve as preliminary screening sequences. All screening probes were labeled with FAM fluorescence, which allows the signals from the samples with GMO content and those without to be easily differentiated. This fiveplex screening method is a new development in GMO screening. Utilizing an optimal amplification assay, the specificity, limit of detection (LOD), and limit of quantitation (LOQ) were validated. The LOD and LOQ of this GMO screening method were 0.1% and 0.01%, respectively, with a relative standard deviation (RSD) < 25%. This method could serve as an important tool for the detection of GM maize from different processed, commercially available products. Further, this screening method could be applied to other fields that require reliable and sensitive detection of DNA targets.

摘要

随着基因修饰(GM)技术的发展和基因修饰生物体(GMO)的应用越来越广泛,GMO 面临着越来越多的监管压力,需要遵守严格的标签指导原则。单一plex 检测方法无法进行高通量分析,无法实现最佳 GMO 检测。结合多重检测和液滴数字聚合酶链反应(ddPCR)的优势,提出了一种单通用引物多重-ddPCR(SUP-M-ddPCR)策略,用于准确的广谱筛选和定量。SUP 提高了 PCR 中引物的效率,在建立高通量多重检测方法中发挥着重要作用。新兴的 ddPCR 技术已用于核酸分子的准确定量,无需标准曲线。以玉米为参照点,选择四个异源序列(35S、NOS、NPTII 和 PAT)来评估该策略的可行性和适用性。令人惊讶的是,这四个基因涵盖了超过 93%的转基因玉米品系,可作为初步筛选序列。所有筛选探针均用 FAM 荧光标记,可轻松区分具有 GMO 含量和无 GMO 含量的样品信号。这种五重筛选方法是 GMO 筛选的新进展。利用最佳扩增检测,验证了特异性、检测限(LOD)和定量限(LOQ)。该 GMO 筛选方法的 LOD 和 LOQ 分别为 0.1%和 0.01%,相对标准偏差(RSD)<25%。该方法可作为检测不同加工、市售 GM 玉米的重要工具。此外,该筛选方法可应用于需要可靠和敏感检测 DNA 靶标的其他领域。

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