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首页> 外文期刊>Molecular Biology >Preparing of Single-Stranded DNAin Single-Stage PCR with Low-Melt Excess Primer for Hybridization on Biochips
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Preparing of Single-Stranded DNAin Single-Stage PCR with Low-Melt Excess Primer for Hybridization on Biochips

机译:具有低熔过量引物的单阶段PCR中单链DNA的制备,用于在生物芯片上杂交

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摘要

A method for fluorescently labeled single-stranded DNA (ssDNA) production during single-stage polymerase chain reaction (PCR) for subsequent hybridization on a biochip was described. This approach, whose efficiency was confirmed in the case of DARC gene, is considered as an alternative to two-stage nested PCR, consisting of two separate reactions: symmetric and asymmetric. Implementation of PCR in a single stage was achieved due to the use of a truncated excess primer in the second stage that does not anneal on the matrix during the cycles of symmetric stage of PCR and that enters the reaction after decrease of the anneal-ing temperature in asymmetric stage. As a result, high efficiency of genotyping by means of hybridization on biochips is maintained. The suggested approach will allow us to reduce the time, working hours, and risk of contamination when researching biochips.
机译:描述了一种在单阶段聚合酶链反应(PCR)中进行荧光标记的单链DNA(ssDNA)生产,随后在生物芯片上杂交的方法。这种方法的有效性在DARC基因的情况下得到了证实,被认为是两阶段嵌套式PCR的替代方法,该方法由两个独立的反应组成:对称反应和非对称反应。由于在第二阶段使用了截短的多余引物,因此在单阶段中实现了PCR,该引物在PCR对称阶段的循环中不会在基质上退火,并且会在降低退火温度后进入反应在不对称阶段。结果,通过在生物芯片上的杂交,保持了高效率的基因分型。建议的方法将使我们在研究生物芯片时减少时间,工作时间和污染风险。

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