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Biosensors for Detecting Genetically Modified Organisms in Food and Feed

机译:用于检测食品和饲料中转基因生物的生物传感器

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摘要

The detection of genetically modified organisms is of growing interest given their considerable presence in vast variety of food and feed ingredients, as well as their environmental impact. In this study we demonstrate real-time, label- free detection of DNA from genetically modified, Roundup Ready (RR) soybeans by surface plasmon resonance (SPR). Two single stranded (ss) DNA sequences were employed: 1) a thiol labeled (5'- SH) oligonucleotide allowing oriented covalent immobilization to the gold surface of the sensor which served as an anchor, and 2) probe sequence targeting the promoter of the (CaMV 35S) 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) gene present in RR soybeans. Our data indicate the limit of detection was as low as 2.0 nM. The system was also interrogated with target and non-target oligomeric mix and showed significant degree of specificity and selectivity. No binding was observed with non-target oligo injections. The sensitivity was as low as 8.0 nM when the target was in an excess mix of non-target sequences. This is the first step in developing a highly sensitive method for direct, label-free detection of genomic DNA from food products containing GMO soybeans.
机译:考虑到转基因生物在多种食品和饲料成分中的大量存在及其对环境的影响,对这种生物的检测日益引起人们的关注。在这项研究中,我们证明了通过表面等离振子共振(SPR)从转基因抗农达(RR)大豆中实时,无标签地检测DNA。使用了两个单链(ss)DNA序列:1)巯基标记的(5'-SH)寡核苷酸,可将共价定向固定在用作锚点的传感器的金表面上,以及2)靶向该启动子的探针序列(CaMV 35S)RR大豆中存在5-烯丙基丙酮酸Shikimate-3-磷酸合酶(EPSPS)基因。我们的数据表明检测限低至2.0 nM。该系统还用目标和非目标寡聚混合物进行询问,并显示出显着程度的特异性和选择性。非目标寡核苷酸注射未观察到结合。当靶标与非靶标序列过量混合时,灵敏度低至8.0 nM。这是开发一种高度灵敏的方法的第一步,该方法可以直接,无标记地检测含有GMO大豆的食品中的基因组DNA。

著录项

  • 来源
    《Nano/biosensors and actuators》|2015年|31-39|共9页
  • 会议地点 Chicago IL(US)
  • 作者单位

    Materials Engineering and Research Center, Auburn University, Auburn, Alabama 36832, USA;

    Materials Engineering and Research Center, Auburn University, Auburn, Alabama 36832, USA;

    Materials Engineering and Research Center, Auburn University, Auburn, Alabama 36832, USA;

    Materials Engineering and Research Center, Auburn University, Auburn, Alabama 36832, USA;

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  • 原文格式 PDF
  • 正文语种 eng
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