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Novel computational methods for increasing PCR primer design effectiveness in directed sequencing

机译:在定向测序中提高PCR引物设计效率的新型计算方法

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摘要

BackgroundPolymerase chain reaction (PCR) is used in directed sequencing for the discovery of novel polymorphisms. As the first step in PCR directed sequencing, effective PCR primer design is crucial for obtaining high-quality sequence data for target regions. Since current computational primer design tools are not fully tuned with stable underlying laboratory protocols, researchers may still be forced to iteratively optimize protocols for failed amplifications after the primers have been ordered. Furthermore, potentially identifiable factors which contribute to PCR failures have yet to be elucidated. This inefficient approach to primer design is further intensified in a high-throughput laboratory, where hundreds of genes may be targeted in one experiment.
机译:背景技术聚合酶链反应(PCR)用于定向测序,用于发现新的多态性。作为PCR定向测序的第一步,有效的PCR引物设计对于获得目标区域的高质量序列数据至关重要。由于当前的计算引物设计工具尚未完全通过稳定的基础实验室规程进行调整,因此在订购引物后,研究人员可能仍被迫迭代优化扩增失败的规程。此外,尚未阐明导致PCR失败的潜在可识别因素。这种高效率的引物设计方法在高通量实验室中得到了进一步加强,该实验室可以在一个实验中靶向数百个基因。

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