School of Forensic Sciences, National Forensic Sciences University, Delhi Campus, Sector-3, Rohini, New Delhi, 110085, India.
Appl Microbiol Biotechnol. 2022 Jun;106(12):4367-4374. doi: 10.1007/s00253-022-12016-8. Epub 2022 Jun 15.
CRISPR-Cas technology has revolutionized the field of biotechnology with its precise therapeutic use from genetic as well as infectious diseases point of view. This technology is rapidly evolving to single tool enabling site-directed cut in the genome and highly specific activation or inhibition of gene expression or the exchange of single bases. Besides clinical applications, CRISPR-Cas technology has also shown promising use in the field of forensic DNA analysis. Enrichment of targeted genetic marker for identification followed by sequencing and non-PCR-dependent technique ensures the use of CRISPR-Cas technology in challenging forensic biological samples. The use of this advanced technology is also deemed helpful in mixed profile attribution, mostly in LCN contributors and the generation of a useful DNA profile in degraded samples. Besides its useful applications in forensic DNA analysis, CRISPR-Cas technology poses a huge threat from the generation of ghost DNA profiles by modification/alteration of target genetic markers. Forensic DNA analysts should carry out analysis of additional markers such as non-CODIS markers, Y-, X-chromosome markers, and mitochondrial DNA sequencing in a suspected ghost DNA profile case. KEY POINTS: • CRISPR-Cas9 technique is useful in analyzing LCN, mixed and degraded samples • Alteration of DNA using this technique can lead to generation of ghost DNA profiles • Alternative genetic markers and methylation pattern may detect a ghost DNA profile.
CRISPR-Cas 技术从遗传和传染病的角度来看,其精确的治疗用途彻底改变了生物技术领域。这项技术正在迅速发展,成为一种单一的工具,可以在基因组中进行定点切割,以及高度特异性地激活或抑制基因表达或单个碱基的交换。除了临床应用外,CRISPR-Cas 技术在法医 DNA 分析领域也显示出有希望的用途。目标遗传标记的富集用于鉴定,随后进行测序和非 PCR 依赖的技术,确保了 CRISPR-Cas 技术在具有挑战性的法医生物样本中的使用。这种先进技术的使用也被认为有助于混合谱归因,主要是在 LCN 贡献者和降解样本中生成有用的 DNA 谱。除了在法医 DNA 分析中的有用应用外,CRISPR-Cas 技术还通过目标遗传标记的修饰/改变产生幽灵 DNA 谱带来了巨大的威胁。在疑似幽灵 DNA 谱的情况下,法医 DNA 分析人员应进行额外标记的分析,例如非 CODIS 标记、Y-、X-染色体标记和线粒体 DNA 测序。
CRISPR-Cas9 技术可用于分析 LCN、混合和降解样本;
使用这种技术改变 DNA 可能会导致幽灵 DNA 谱的产生;
替代遗传标记和甲基化模式可能会检测到幽灵 DNA 谱。