纳米孔测序
STR分析
基因分型
纳米孔
放大器
生物
微卫星
DNA
计算生物学
DNA纳米球测序
STR复用系统
分子反转探针
聚合酶链反应
DNA测序
遗传学
打字
结扎测序
劈开
分子生物学
DNA分析
聚合酶
大规模并行测序
DNA测序器
串联重复
杂交测序
可变数串联重复
人类基因组
A-DNA
Cas9
多路复用
核糖核酸
反聚合酶链反应
作者
Tingting Yang,Jiarong Zhang,Zihan Xie,Zilin Ren,Mengyang Zhao,Wen‐Jing Hu,Jiangwei Yan,Ming Ni
摘要
CRISPR-Cas9-targeted sequencing can enrich DNA regions of interest by directing the Cas9 protein to bind and cleave specific DNA sequences via single-guide RNA (sgRNA). It is interesting to explore the efficacy of using CRISPR-Cas9-targeted nanopore sequencing (referred to as Cas9-seq), a polymerase chain reaction (PCR)-free workflow, for forensic short tandem repeats (STR) profiling, and to compare it with the amplification-based approach. In this pilot study, we constructed a Cas9-seq method for profiling seven STR loci, including D18S51, FGA, TPOX, D16S539, vWA, CSF1PO, and TH01. With 3 µg DNA inputs from human NA12878 and 293T cell lines, we achieved 643.45- and 468.34-fold enrichment ratios of the sgRNA-targeted regions by using Cas9-seq, respectively. Compared to nanopore sequencing of PCR amplicon products (amplicon-seq) of the ForenSeq DNA Signature Prep kit, the Cas9-seq reads had an ultralow strand bias. However, surprisingly, Cas9-seq did not show advantages in allele balance and had higher noise in the reads. At the seven STR loci for the two samples, both Cas9-seq and amplicon-seq had three genotyping errors. Additionally, there were no false-positive single-nucleotide polymorphisms (SNPs) introduced by Cas9-seq, whereas amplicon-seq produced three. In sum, we conclude that the PCR-free Cas9-seq might not be favorable for forensic STR genotyping.
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