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Towards on-site testing of Phytophthora species

机译:进行疫霉菌种的现场测试

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Rapid detection and accurate identification of plant pathogens in the field is an ongoing challenge. In this study, we report for the first time on the development of a helicase-dependent isothermal amplification (HDA) in combination with on-chip hybridization for the detection of selected Phytophthora species. The HDA approach allows efficient amplification of the yeast GTP-binding protein (Ypt1) target gene region at one constant temperature in a miniaturized heating device. The assay's specificity was determined by on-chip DNA hybridization and subsequent silver nanoparticle deposition. The silver deposits serve as stable endpoint signals that enable the visual as well as the electrical readout. Our promising results point to the direction of a near future on-site application of the combined techniques for a reliable detection of Phytophthora species...
机译:在田间快速检测和准确鉴定植物病原体是一个持续的挑战。在这项研究中,我们首次报道了解旋酶依赖性等温扩增(HDA)与芯片上杂交相结合以检测所选疫霉菌的发展。 HDA方法允许在小型化加热装置中的一个恒定温度下有效扩增酵母GTP结合蛋白(Ypt1)目标基因区域。通过芯片上DNA杂交和随后的银纳米颗粒沉积确定测定的特异性。银沉积物是稳定的终点信号,可实现视觉和电学读数。我们令人鼓舞的结果指出了在不久的将来将结合技术用于可靠检测疫霉菌的方向。

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