Author:
Nachmanson Daniela,Lian Shenyi,Schmidt Elizabeth K.,Hipp Michael J.,Baker Kathryn T.,Zhang Yuezheng,Tretiakova Maria,Loubet-Senear Kaitlyn,Kohrn Brendan F.,Salk Jesse J.,Kennedy Scott R.,Risques Rosa Ana
Abstract
ABSTRACTCurrent next-generation sequencing techniques suffer from inefficient target enrichment and frequent errors. To address these issues, we have developed a targeted genome fragmentation approach based on CRISPR/Cas9 digestion. By designing all fragments to similar lengths, regions of interest can be size-selected prior to library preparation, increasing hybridization capture efficiency. Additionally, homogenous length fragments reduce PCR bias and maximize read usability. We combine this novel target enrichment approach with ultra-accurate Duplex Sequencing. The result, termed CRISPR-DS, is a robust targeted sequencing technique that overcomes the inherent challenges of small target enrichment and enables the detection of ultra-low frequency mutations with small DNA inputs.
Publisher
Cold Spring Harbor Laboratory
Cited by
2 articles.
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