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Exon sequencing mutation detection algorithm based on PCR matching

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  • Guobin Chen
  • Xianzhong Xie

Abstract

Background: With the development of second-generation sequencing technology, more and more DNA sequence variations have been detected. Exon sequencing is the first choice for sequencing many cancer genes, and it can be better used to identify disease status by detecting gene variants. PCR sequence is an effective method to capture that sequence of an exon in the process of sequencing. Exon sequencing sequence contains PCR primer sequence, the correct position of the sequence can be determined by PCR primer sequence, which can be found in SNP, Indel mutation point by comparing the sequence of PCR primer sequence. Results: In this paper, a matching algorithm based on the PCR primer sequence is proposed, which can effectively sequence the position of PCR primer sequence and find out the key position sequence. Then the sequencing sequence is sorted and the number of the same sequence is counted to reduce the matching times. Then, the sequenced sequence was matched with PCR primer sequence, so that the DNA position could be accurately matched and the variation in the sequenced sequence could be found more quickly. Conclusions: Compared with the traditional sequence matching method, PCR primer sequence matching method can match many sequences and find more variation. It also showed a high recall rate in the recall rate.

Suggested Citation

  • Guobin Chen & Xianzhong Xie, 2020. "Exon sequencing mutation detection algorithm based on PCR matching," PLOS ONE, Public Library of Science, vol. 15(8), pages 1-19, August.
  • Handle: RePEc:plo:pone00:0236709
    DOI: 10.1371/journal.pone.0236709
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    1. Arun Advani & George Stoye, 2017. "Cheaper, Greener and More Efficient: Rationalising UK Carbon Prices," Fiscal Studies, Institute for Fiscal Studies, vol. 38, pages 269-299, June.
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