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Single Nucleotide Polymorphism (SNP) Genotyping Methods Using Bead-Based Microfluidics with DASH Technology

机译:用跨划线技术使用珠子微流体的单核苷酸多态性(SNP)基因分型方法

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Single nucleotide polymorphism (SNP) detection is one of the most critical genomic technologies. The SNP detection techniques today mostly utilized fluorescent dye labeled DNA probe or molecular beacon, which need high reagent cost. In this research, a genotyping system is developed by integrating miniaturized the dynamic allele-specific hybridization (DASH) technique with a bead-based microfluidic device. Our system offers a rapid genotyping scheme by using the silica microbeads conjugated to probe-gene target duplex, and performing the melting curve analysis of the duplex. Ataxia-telangiectasia mutation (ATM) gene in Landrace sows, which had been proven as a major bio-marker associated with reproductive performance, was used to demonstrate the practical applications of our genotyping system in SNP detection.
机译:单核苷酸多态性(SNP)检测是最关键的基因组技术之一。今天的SNP检测技术主要利用荧光染料标记为DNA探针或分子标记,需要高试剂成本。在该研究中,通过将小型化的动态等位基因特异性杂交(DASH)技术与基于珠子的微流体装置集成来开发基因分型系统。我们的系统通过使用与探针基因靶双链体缀合的二氧化硅微珠和进行双链体的熔化曲线分析,提供快速基因分型方案。被证明是作为与生殖性能相关的主要生物标记的地位母猪中的共济失调 - Telanciectasia突变(ATM)基因用于证明我们的基因分型系统在SNP检测中的实际应用。

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