暴露于室内条件下样品的体液微生物鉴定

IF 3.2 2区 医学 Q2 GENETICS & HEREDITY
Akos Dobay , Cordula Haas , Geoffrey Fucile , Nora Downey , Hilary G. Morrison , Adelgunde Kratzer , Natasha Arora
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引用次数: 42

摘要

在犯罪现场的法医重建活动中,生物痕迹及其身体来源的鉴定是可以在法庭上提出的宝贵证据。虽然目前有几种推定和确认的测试,但特异性和敏感性的局限性促使人们寻找替代方法。细菌标记已被提出作为法医体液/组织鉴定的一种新方法。细菌不仅在人体中无处不在,而且最近对16S rRNA基因的微生物组测序研究表明,细菌群落结构在人体各个部位都是不同的。然而,在实验室处理之前,犯罪现场的痕迹和污渍通常会在人体外的环境中暴露不同的时间。因此,尚不清楚暴露的样品是否继续具有其身体起源部位的微生物特征。在这项概念验证研究中,我们从六个不同的身体部位收集了样本:唾液、皮肤、外周血、阴道液、经血和精液。我们将这些样品中的一部分暴露在室内条件下30天,而其余样品在提取后直接处理。我们对46个对照和暴露样本的16S rRNA基因序列数据进行了分析,结果表明,这两种类型的样本都按身体部位分组,尽管观察到一些异常值。根据我们的研究结果,阴道和月经样本共享它们的微生物特征,并且不能使用细菌标记来区分。总之,我们的发现表明细菌标记是法医体液/组织鉴定的一个有前途的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microbiome-based body fluid identification of samples exposed to indoor conditions

In the forensic reconstruction of crime scene activities, the identification of biological traces and their bodily origin are valuable evidence that can be presented in court. While several presumptive and confirmatory tests are currently available, the limitations in specificity and sensitivity have instigated a search for alternative methods. Bacterial markers have been proposed as a novel approach for forensic body fluid/tissue identification. Bacteria are not only ubiquitous throughout the human body, but also, as shown by recent microbiome sequencing studies of the 16S rRNA gene, bacterial community structures are distinct across body sites. Traces and stains at crime scenes are, however, often exposed to the environment outside the human body for variable periods of time before laboratory processing. Thus, it is not clear whether exposed samples continue to harbor microbial signatures characteristic of their body site of origin. In this proof-of-concept study we collected samples from six different body sites: saliva, skin, peripheral blood, vaginal fluid, menstrual blood and semen. We exposed a subset of these samples to indoor conditions for 30 days while the remaining samples were processed directly after extraction. Our analyses of 16S rRNA gene sequence data for a total of 46 control and exposed samples show that both types of samples group by body site, although a few outliers are observed. Based on our results, vaginal and menstrual samples share their microbial signatures, and cannot be distinguished using bacterial markers. Overall, our findings indicate that bacterial markers are a promising avenue for forensic body fluid/tissue identification.

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来源期刊
CiteScore
7.50
自引率
32.30%
发文量
132
审稿时长
11.3 weeks
期刊介绍: Forensic Science International: Genetics is the premier journal in the field of Forensic Genetics. This branch of Forensic Science can be defined as the application of genetics to human and non-human material (in the sense of a science with the purpose of studying inherited characteristics for the analysis of inter- and intra-specific variations in populations) for the resolution of legal conflicts. The scope of the journal includes: Forensic applications of human polymorphism. Testing of paternity and other family relationships, immigration cases, typing of biological stains and tissues from criminal casework, identification of human remains by DNA testing methodologies. Description of human polymorphisms of forensic interest, with special interest in DNA polymorphisms. Autosomal DNA polymorphisms, mini- and microsatellites (or short tandem repeats, STRs), single nucleotide polymorphisms (SNPs), X and Y chromosome polymorphisms, mtDNA polymorphisms, and any other type of DNA variation with potential forensic applications. Non-human DNA polymorphisms for crime scene investigation. Population genetics of human polymorphisms of forensic interest. Population data, especially from DNA polymorphisms of interest for the solution of forensic problems. DNA typing methodologies and strategies. Biostatistical methods in forensic genetics. Evaluation of DNA evidence in forensic problems (such as paternity or immigration cases, criminal casework, identification), classical and new statistical approaches. Standards in forensic genetics. Recommendations of regulatory bodies concerning methods, markers, interpretation or strategies or proposals for procedural or technical standards. Quality control. Quality control and quality assurance strategies, proficiency testing for DNA typing methodologies. Criminal DNA databases. Technical, legal and statistical issues. General ethical and legal issues related to forensic genetics.
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