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采用纳米柱薄膜技术可视化后,对受环境污染的潜伏指纹进行高通量 DNA 测序。

High-throughput DNA sequencing of environmentally insulted latent fingerprints after visualization with nanoscale columnar-thin-film technique.

机构信息

Forensic Science Program and Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.

Department of Psychiatry, Yale University School of Medicine & VA CT Healthcare System, New Haven, CT 06511, USA.

出版信息

Sci Justice. 2021 Sep;61(5):505-515. doi: 10.1016/j.scijus.2021.06.002. Epub 2021 Jun 7.

Abstract

The goals of this study were to (a) ascertain human identity capabilities of DNA obtained from latent fingerprints that have been first environmentally insulted and then developed by the deposition of a columnar thin film (CTF), and (b) to determine if the CTF process and material are detrimental to single nucleotide polymorphism (SNP) analysis. Fingerprints were deposited on five different types of substrates and aged for one day, 7 days or 30 days while being environmentally insulted under one of the four conditions: 16.6 °C and 60% relative humidity (RH) (Condition A), 24.5 °C and 60% RH (Condition B), 35 °C and 67% RH (Condition C) and a cold condition (Condition D). Then CTF technique was then on 59% of these fingerprints. DNA samples from 805 fingerprints were extracted, quantified, subjected to manual library preparation using the Precision ID Identity Panel, and underwent high-throughput sequencing. The Ion S5™ platform was employed to sequence 124 SNP amplicons. SNPs were successfully sequenced from 802/805 samples. Total read depth was consistent across environmental conditions, and majority of samples had 100% profile completeness and 100% concordance. Anecdotally, libraries that were amplified with a higher cycle number had more 'Major Allele Frequency' flags compared to samples amplified with 23 cycle numbers, possibly due to stochastic effects. Neither the substrates nor the CTF process and materials inhibit downstream DNA analysis. DNA of low quality and quantity from the chosen samples can be sequenced using the Precision ID Identity Panel on the Ion S5™ platform which performed well, however, a different approach may be needed if spurious alleles are suspected.

摘要

本研究的目的是

(a)确定从首先受到环境侵害然后通过沉积柱状薄膜(CTF)发展而成的潜伏指纹中提取的 DNA 的人类身份识别能力;(b)确定 CTF 过程和材料是否对单核苷酸多态性(SNP)分析有害。将指纹沉积在五种不同类型的基质上,并在环境侵害下老化一天、七天或三十天,环境侵害条件为:16.6°C 和 60%相对湿度(RH)(条件 A)、24.5°C 和 60% RH(条件 B)、35°C 和 67% RH(条件 C)和寒冷条件(条件 D)。然后,CTF 技术应用于其中 59%的指纹。从 805 个指纹中提取 DNA 样本,进行定量,使用 Precision ID 身份面板进行手动文库制备,并进行高通量测序。采用 Ion S5™平台对 124 个 SNP 扩增子进行测序。成功地从 802/805 个样本中测序到 SNP。所有环境条件下的总读取深度都保持一致,大多数样本的图谱完整性达到 100%,一致性达到 100%。从轶事证据来看,与扩增 23 个循环数的样本相比,使用更高循环数扩增的文库中“主要等位基因频率”标志更多,这可能是由于随机效应。所选样本的低质量和低数量 DNA 可以使用 Ion S5™平台上的 Precision ID 身份面板进行测序,该平台表现良好,但是,如果怀疑存在虚假等位基因,则可能需要采用不同的方法。

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