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使用牛津纳米孔测序系统进行法医DNA表型分析。

Forensic DNA phenotyping using Oxford Nanopore Sequencing system.

作者信息

Sapan Veysel, Simsek Sumeyye Zulal, Filoğlu Gonul, Bulbul Ozlem

机构信息

Institute of Forensic Sciences and Legal Medicine, Istanbul University-Cerrahpasa, Istanbul, Turkey.

出版信息

Electrophoresis. 2025 Feb;46(3-4):198-211. doi: 10.1002/elps.202300252. Epub 2024 May 25.

Abstract

In forensic science, the demand for precision, consistency, and cost-effectiveness has driven the exploration of next-generation sequencing technologies. This study investigates the potential of Oxford Nanopore Sequencing (ONT) Technology for analyzing the HIrisPlex-S panel, a set of 41 single nucleotide polymorphism (SNP) markers used to predict eye, hair, and skin color. Using ONT sequencing, we assessed the accuracy and reliability of ONT-generated data by comparing it with conventional capillary electrophoresis (CE) in 18 samples. The Guppy v6.1 was used as a basecaller, and sample profiles were obtained using Burrows-Wheeler Aligner, Samtools, BCFtools, and Python. Comparing accuracy with CE, we found that 62% of SNPs in ONT-unligated samples were correctly genotyped, with 36% showing allele dropout, and 2% being incorrectly genotyped. In the ONT-ligated samples, 85% of SNPs were correctly genotyped, with 10% showing allele dropout, and 5% being incorrectly genotyped. Our findings indicate that ONT, particularly when combined with ligation, enhances genotyping accuracy and coverage, thereby reducing allele dropouts. However, challenges associated with the technology's error rates and the impact on genotyping accuracy are recognized. Phenotype predictions based on ONT data demonstrate varying degrees of success, with the technology showing high accuracy in several cases. Although ONT technology holds promise in forensic genetics, further optimization and quality control measures are essential to harness its full potential. This study contributes to the ongoing efforts to refine sequence read tuning and improve correction tools in the context of ONT technology's application in forensic genetics.

摘要

在法医学中,对精确性、一致性和成本效益的需求推动了对下一代测序技术的探索。本研究调查了牛津纳米孔测序(ONT)技术分析HIrisPlex-S面板的潜力,该面板包含41个用于预测眼睛、头发和皮肤颜色的单核苷酸多态性(SNP)标记。使用ONT测序,我们通过将18个样本中ONT生成的数据与传统毛细管电泳(CE)进行比较,评估了其准确性和可靠性。使用Guppy v6.1作为碱基识别器,并使用Burrows-Wheeler比对器、Samtools、BCFtools和Python获得样本图谱。将准确性与CE进行比较,我们发现ONT未连接样本中62%的SNP被正确基因分型,36%出现等位基因缺失,2%被错误基因分型。在ONT连接样本中,85%的SNP被正确基因分型,10%出现等位基因缺失,5%被错误基因分型。我们的研究结果表明,ONT,特别是与连接相结合时,可提高基因分型的准确性和覆盖率,从而减少等位基因缺失。然而,该技术的错误率相关挑战及其对基因分型准确性的影响是公认的。基于ONT数据的表型预测显示出不同程度的成功,该技术在某些情况下显示出高准确性。尽管ONT技术在法医遗传学中有前景,但进一步优化和质量控制措施对于充分发挥其潜力至关重要。本研究有助于在ONT技术应用于法医遗传学的背景下,不断努力优化序列读取调整并改进校正工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51cd/11865696/1443f3fd57cb/ELPS-46--g003.jpg

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