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PCR-Free Detection of Genetically Modified Organisms Using Magnetic Capture Technology and Fluorescence Cross-Correlation Spectroscopy

机译:使用磁性捕获技术和荧光互相关光谱技术的无PCR检测转基因生物

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摘要

The safety of genetically modified organisms (GMOs) has attracted much attention recently. Polymerase chain reaction (PCR) amplification is a common method used in the identification of GMOs. However, a major disadvantage of PCR is the potential amplification of non-target DNA, causing false-positive identification. Thus, there remains a need for a simple, reliable and ultrasensitive method to identify and quantify GMO in crops. This report is to introduce a magnetic bead-based PCR-free method for rapid detection of GMOs using dual-color fluorescence cross-correlation spectroscopy (FCCS). The cauliflower mosaic virus 35S (CaMV35S) promoter commonly used in transgenic products was targeted. CaMV35S target was captured by a biotin-labeled nucleic acid probe and then purified using streptavidin-coated magnetic beads through biotin-streptavidin linkage. The purified target DNA fragment was hybridized with two nucleic acid probes labeled respectively by Rhodamine Green and Cy5 dyes. Finally, FCCS was used to detect and quantify the target DNA fragment through simultaneously detecting the fluorescence emissions from the two dyes. In our study, GMOs in genetically engineered soybeans and tomatoes were detected, using the magnetic bead-based PCR-free FCCS method. A detection limit of 50 pM GMOs target was achieved and PCR-free detection of GMOs from 5 µg genomic DNA with magnetic capture technology was accomplished. Also, the accuracy of GMO determination by the FCCS method is verified by spectrophotometry at 260 nm using PCR amplified target DNA fragment from GM tomato. The new method is rapid and effective as demonstrated in our experiments and can be easily extended to high-throughput and automatic screening format. We believe that the new magnetic bead-assisted FCCS detection technique will be a useful tool for PCR-free GMOs identification and other specific nucleic acids.
机译:转基因生物(GMO)的安全性最近引起了很多关注。聚合酶链反应(PCR)扩增是鉴定GMO的常用方法。但是,PCR的主要缺点是可能会扩增非目标DNA,从而导致假阳性鉴定。因此,仍然需要一种简单,可靠和超灵敏的方法来鉴定和定量农作物中的转基因生物。本报告将介绍一种基于磁珠的无PCR方法,该方法可使用双色荧光互相关光谱(FCCS)快速检测GMO。以通常用于转基因产品中的花椰菜花叶病毒35S(CaMV35S)启动子为靶标。 CaMV35S靶标被生物素标记的核酸探针捕获,然后使用链霉亲和素包被的磁珠通过生物素-链霉亲和素连接进行纯化。将纯化的靶DNA片段与分别用罗丹明绿和Cy5染料标记的两个核酸探针杂交。最后,通过同时检测两种染料的荧光发射,FCCS用于检测和定量目标DNA片段。在我们的研究中,使用基于磁珠的无PCR FCCS方法检测了转基因大豆和番茄中的GMO。达到了50 pM GMO目标的检出限,并且使用磁捕获技术完成了从5 µg基因组DNA的无PCR检测GMO的检测。此外,使用PCR扩增的GM番茄靶DNA片段通过分光光度法在260 nm处验证了FCCS方法测定GMO的准确性。如我们的实验所示,该新方法快速有效,并且可以轻松扩展为高通量和自动筛选格式。我们相信,新的磁珠辅助FCCS检测技术将成为无PCR转基因生物鉴定和其他特定核酸的有用工具。

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