仆从
纳米孔测序
纳米孔
计算机科学
软件可移植性
鉴定(生物学)
基因分型
计算生物学
打字
DNA测序
生物
遗传学
基因型
纳米技术
语音识别
材料科学
操作系统
DNA
基因
植物
作者
Yuan Luo,Jiarong Zhang,Ming Ni,Zhusong Mei,Qiao Ye,Bingqian Guo,Longmei Fang,Dongyun Feng,Lu Wang,Jiangwei Yan,Guangyun Wang
标识
DOI:10.1002/elps.202300234
摘要
Abstract Nanopore sequencing technology has broad application prospects in forensic medicine due to its small size, portability, fast speed, real‐time result analysis capabilities, single‐molecule sequencing abilities, and simple operation. Here, we demonstrate for the first time that nanopore sequencing platforms can be used to identify individuals in the field. Through scientific and reasonable design, a nanopore MinION MK1B device and other auxiliary devices are integrated into a portable detection box conducive to individual identification at the accident site. Individual identification of 12 samples could be completed within approximately 24 h by jointly detecting 23 short tandem repeat (STR) loci. Through double‐blinded experiments, the genotypes of 49 samples were successfully determined, and the accuracy of the STR genotyping was verified by the gold standard. Specifically, the typing success rate for 1150 genotypes was 95.3%, and the accuracy rate was 86.87%. Although this study focused primarily on demonstrating the feasibility of full‐process testing, it can be optimistically predicted that further improvements in bioinformatics workflows and nanopore sequencing technology will help enhance the feasibility of Oxford Nanopore Technologies equipment for real‐time individual identification at accident sites.
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