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Short template amplicon and multiplex megaprimer-enabled relay (STAMMER) sequencing, a simultaneous approach to higher throughput sequence-based typing of polymorphic genes.

机译:短模板扩增子和启用多重引物的多重引物中继(STAMMER)测序,一种同时进行的基于高通量序列的多态性基因分型方法。

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摘要

Sequence-based typing (SBT) is a powerful method of genotyping in highly polymorphic gene systems. In standard SBT methods, both strands of a double-stranded template amplicon are sequenced in separate reactions in order to achieve high quality data across the region of interest. The amount of informative data that is obtained from the second strand sequence is often low, whilst the impact of performing second strand sequencing on costs and throughput are significant. Here we present short template amplicon and multiplex megaprimer-enabled relay (STAMMER) sequencing, a novel simultaneous sequence-based typing methodology that allows the detection of any practical amount of useful sequence from a plurality of distinct polymerase chain reaction products in a single sequencing reaction. In addition to simultaneous bidirectional sequencing, we show how the STAMMER approach can be used to simultaneously sequence a number of regions of interest that are not physically linked within the range of a single sequencing reaction. The efficiencies of this method could impact significantly on the output of SBT laboratories.
机译:基于序列的分型(SBT)是在高度多态的基因系统中进行基因分型的有效方法。在标准SBT方法中,双链模板扩增子的两条链都在单独的反应中进行测序,以在整个目标区域获得高质量的数据。从第二链序列获得的信息数据量通常很少,而执行第二链测序对成本和产量的影响却很大。在这里,我们介绍了短模板扩增子和支持多重引物的多重引物(STAMMER)测序,这是一种新颖的基于同时序列的分型方法,可以从单个测序反应中的多个不同聚合酶链反应产物中检测出任何实用量的有用序列。除了同时双向测序外,我们还展示了如何使用STAMMER方法同时对在单个测序反应范围内未物理连接的多个感兴趣区域进行同时测序。这种方法的效率可能会严重影响SBT实验室的产出。

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