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A sandwich-type DNA array platform for detection of GM targets in multiplex assay

机译:夹心型DNA阵列平台,用于多重测定中的GM目标检测

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摘要

Over the last decade, array detection has been developed to qualitatively assess the presence of genetically modified organisms (GMOs). To date, DNA array systems have the highest capabilities as a result of GMOs analysis. We describe the construction of an array platform in the sandwich hybridization format for the detection of transgenic promoter of Cauliflower mosaic virus (CaMV; p35S). Sequence-specific signal development has been achieved by a sandwich complex composed of a surface immobilized capture probe and a fluorescein-tagged signal probe, which are partially complementary to the p35S oligonucleotide. We used poly-l-lysine-coated glass slides as support material, on which capture probes were immobilized by a heterobifunctional cross-linker. The comparative results of optimization studies including cross-linker types probe concentrations and hybridization conditions (sequence, temperature and duration) were reported. An optimum hybridization signal was obtained with a 32.5 Ǻ cross-linker, 10 μM capture and 20 μM signal probe concentrations, respectively. A relatively short hybridization time (2.5 h) provided reproducible array signals. No significant effect of hybridization sequence on the fluorescence intensity was observed. The described platform can specifically detect label-free transgenic sequences with a target of 0.01 μM concentration, while the optimized system exhibits great potential for the application of different GMO target sequences (p35S, tNOS, bar and cry) to multiplex array formats.
机译:在过去的十年中,已开发出阵列检测方法,以定性评估转基因生物(GMO)的存在。迄今为止,由于转基因生物的分析,DNA阵列系统具有最高的功能。我们描述了三明治杂交格式的阵列平台的建设,用于检测花椰菜花叶病毒(CaMV; p35S)的转基因启动子。已通过由表面固定的捕获探针和荧光素标记的信号探针组成的三明治复合物实现了序列特异性信号的开发,所述探针复合物与p35S寡核苷酸部分互补。我们使用聚-1-赖氨酸涂层的载玻片作为支撑材料,捕获探针通过异双功能交联剂固定在其上。报告了优化研究的比较结果,包括交联剂类型,探针浓度和杂交条件(序列,温度和持续时间)。使用32.5 2.5交联剂,10μM捕获物和20μM信号探针浓度分别可获得最佳杂交信号。相对较短的杂交时间(2.5小时)提供了可重现的阵列信号。没有观察到杂交序列对荧光强度的显着影响。所描述的平台可以特异性地检测浓度为0.01μM的无标记转基因序列,而优化后的系统具有将不同GMO靶序列(p35S,tNOS,bar和cry)应用于多重阵列格式的巨大潜力。

著录项

  • 来源
    《European Food Research and Technology》 |2012年第3期|p.429-437|共9页
  • 作者单位

    Nanobiotechnology Research and Development Group, Department of Biotechnology, Middle East Technical University, 06800, Ankara, Turkey;

    Nanobiotechnology Research and Development Group, Department of Biotechnology, Middle East Technical University, 06800, Ankara, Turkey;

    Nanobiotechnology Research and Development Group, Department of Biotechnology, Middle East Technical University, 06800, Ankara, Turkey;

    Nanobiotechnology Research and Development Group, Department of Biotechnology, Middle East Technical University, 06800, Ankara, Turkey;

    Nanobiz, NanoBioTechnological Systems R&ampD Ltd. Co., METU Technopolis, Gallium Block, No: 18, 06800, Ankara, Turkey;

    Molecular Biology and Biotechnology R&ampD Center, Central Laboratory, Middle East Technical University, 06800, Ankara, Turkey;

    Education Faculty, Başkent University, Bağlıca Kampüsü, 06810, Ankara, Turkey;

    Nanobiotechnology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GMO detection; DNA array; Sandwich hybridization; Multiplex assay;

    机译:GMO检测;DNA阵列;夹心杂交;多重分析;

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