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Nanopore sequencing in non-human forensic genetics

机译:非人类法医遗传学中的纳米孔测序

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摘要

The past decade has seen a rapid expansion of non-human forensic genetics coinciding with the development of 2nd and 3rd generation DNA sequencing technologies. Nanopore sequencing is one such technology that offers massively parallel sequencing at a fraction of the capital cost of other sequencing platforms. The application of nanopore sequencing to species identification has already been widely demonstrated in biomonitoring studies and has significant potential for non-human forensic casework, particularly in the area of wildlife forensics. This review examines nanopore sequencing technology and assesses its potential applications, advantages and drawbacks for use in non-human forensics, alongside other next-generation sequencing platforms and as a possible replacement to Sanger sequencing. We assess the specific challenges of sequence error rate and the standardisation of consensus sequence production, before discussing recent progress in the validation of nanopore sequencing for use in forensic casework. We conclude that nanopore sequencing may be able to play a considerable role in the future of non-human forensic genetics, especially for applications to wildlife law enforcement within emerging forensic laboratories.
机译:在过去的十年中,非人类法证遗传学的迅速扩展与第二代和第三代DNA测序技术的发展相吻合。纳米孔测序是一种这样的技术,它以其他测序平台的资本成本的一小部分提供了大规模平行的测序。在生物监测研究中已经广泛证明了纳米孔测序在物种鉴定中的应用,并且具有非人类法医案例工作,尤其是在野生动植物取证领域。这篇评论检查了纳米孔测序技术,并评估其潜在的应用,优势和缺点,用于非人类法医,以及其他下一代测序平台以及可能替代Sanger测序。在讨论纳米孔测序验证以用于法医案例工作的验证之前,我们评估序列错误率和共识序列产生的标准化的具体挑战。我们得出的结论是,纳米孔测序可能能够在非人类法医遗传学的未来中发挥相当大的作用,尤其是对于在新兴法医实验室内应用于野生动植物执法的应用。

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