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The National DNA Data Bank of Canada: a Quebecer perspective

机译:加拿大国家DNA数据库:魁北克人的观点

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摘要

The Canadian National DNA Database was created in 1998 and first used in the mid-2000. Under management by the RCMP, the National DNA Data Bank of Canada offers each year satisfactory reported statistics for its use and efficiency. Built on two indexes (convicted offenders and crime scene indexes), the database not only provides increasing matches to offenders or linked traces to the various police forces of the nation, but offers a memory repository for cold cases. Despite these achievements, the data bank is now facing new challenges that will inevitably defy the way the database is currently used. These arise from the increasing power of detection of DNA traces, the diversity of demands from police investigators and the growth of the bank itself. Examples of new requirements from the database now include familial searches, low-copy-number analyses and the correct interpretation of mixed samples. This paper aims to develop on the original way set in Québec to address some of these challenges. Nevertheless, analytic and technological advances will inevitably lead to the introduction of new technologies in forensic laboratories, such as single cell sequencing, phenotyping, and proteomics. Furthermore, it will not only request a new holistic/global approach of the forensic molecular biology sciences (through academia and a more investigative role in the laboratory), but also new legal developments. Far from being exhaustive, this paper highlights some of the current use of the database, its potential for the future, and opportunity to expand as a result of recent technological developments in molecular biology, including, but not limited to DNA identification.
机译:加拿大国家DNA数据库创建于1998年,并于2000年中期首次使用。在加拿大皇家骑警的管理下,加拿大国家DNA数据库每年就其使用和效率提供令人满意的报告统计数据。该数据库建立在两个索引(定罪犯和犯罪现场索引)上,不仅提供与罪犯的不断增加的匹配或与国家各种警察的链接迹线,而且还提供了用于处理寒冷案件的存储库。尽管取得了这些成就,数据库现在仍面临着新的挑战,这些挑战将不可避免地挑战当前使用数据库的方式。这些是由于检测DNA痕迹的能力越来越强,警察调查员的需求多样化以及银行本身的发展所致。现在,数据库中新要求的示例包括家族搜索,低拷贝数分析和混合样本的正确解释。本文旨在以魁北克省为解决其中一些挑战而设定的原始方式进行开发。然而,分析和技术的进步将不可避免地导致法医实验室引入新技术,例如单细胞测序,表型分析和蛋白质组学。此外,它将不仅要求法医分子生物学的整体/全球新方法(通过学术界和实验室中更多的调查角色),而且还需要新的法律发展。本文远非详尽无遗,它着重介绍了数据库的当前使用,数据库的未来潜力以及由于分子生物学的最新技术发展而扩展的机会,包括但不限于DNA鉴定。

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