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首页> 外文期刊>Analytical and bioanalytical chemistry >Solid-phase PCR for rapid multiplex detection of Salmonella spp. at the subspecies level, with amplification efficiency comparable to conventional PCR
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Solid-phase PCR for rapid multiplex detection of Salmonella spp. at the subspecies level, with amplification efficiency comparable to conventional PCR

机译:用于快速多重检测沙门氏菌SPP的固相PCR。 在亚种级别,扩增效率与常规PCR相当

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Solid-phase PCR (SP-PCR) has attracted considerable interest in different research fields since it allows parallel DNA amplification on the surface of a solid substrate. However, the applications of SP-PCR have been hampered by the low efficiency of the solid-phase amplification. In order to increase the yield of the solid-phase amplification, we studied various parameters including the length, the density, as well as the annealing position of the solid support primer. A dramatic increase in the signal-to-noise (S/N) ratio was observed when increasing the length of solid support primers from 45 to 80 bp. The density of the primer on the surface was found to be important for the S/N ratio of the SP-PCR, and the optimal S/N was obtained with a density of 1.49 x 10(11) molecules/mm(2). In addition, the use of solid support primers with a short overhang at the 5' end would help improve the S/N ratio of the SP-PCR. With optimized conditions, SP-PCR can achieve amplification efficiency comparable to conventional PCR, with a limit of detection of 1.5 copies/mu l (37.5 copies/reaction). These improvements will pave the way for wider applications of SP-PCR in various fields such as clinical diagnosis, high-throughput DNA sequencing, and single-nucleotide polymorphism analysis.
机译:固相PCR(SP-PCR)引起了对不同研究领域的相当大的兴趣,因为它允许在固体基材的表面上平行DNA扩增。然而,SP-PCR的应用被固相扩增的低效率阻碍了。为了提高固相扩增的产率,我们研究了固体支持引物的长度,密度的各种参数,以及固体支持引物的退火位置。当增加45至80bp的固体支持引物的长度时,观察到信号对噪声(S / N)比的显着增加。发现表面上的引物的密度对于SP-PCR的S / N比对于S / N比来说是重要的,并且获得最佳S / N,密度为1.49×10(11)分子/ mm(2)。此外,在5'末端使用具有短悬角的固体支持引物将有助于改善SP-PCR的S / N比。通过优化的条件,SP-PCR可以实现与常规PCR相当的扩增效率,其检测限为1.5拷贝/ mu L(37.5拷贝/反应)。这些改进将为临床诊断,高通量DNA测序和单核苷酸多态性分析等各种领域进行SP-PCR的更广泛应用。

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