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γ射线辐照微生物材料微生物法医分析中的全基因组测序

Whole-Genome Sequencing in Microbial Forensic Analysis of Gamma-Irradiated Microbial Materials.

作者信息

Broomall Stacey M, Ait Ichou Mohamed, Krepps Michael D, Johnsky Lauren A, Karavis Mark A, Hubbard Kyle S, Insalaco Joseph M, Betters Janet L, Redmond Brady W, Rivers Bryan A, Liem Alvin T, Hill Jessica M, Fochler Edward T, Roth Pierce A, Rosenzweig C Nicole, Skowronski Evan W, Gibbons Henry S

机构信息

BioSciences Division, Research & Technology Directorate, Edgewood Chemical Biological Center, Aberdeen Proving Ground, Aberdeen, Maryland, USA.

BioSciences Division, Research & Technology Directorate, Edgewood Chemical Biological Center, Aberdeen Proving Ground, Aberdeen, Maryland, USA Excet, Inc., Springfield, Virginia, USA.

出版信息

Appl Environ Microbiol. 2015 Nov 13;82(2):596-607. doi: 10.1128/AEM.02231-15. Print 2016 Jan 15.

Abstract

Effective microbial forensic analysis of materials used in a potential biological attack requires robust methods of morphological and genetic characterization of the attack materials in order to enable the attribution of the materials to potential sources and to exclude other potential sources. The genetic homogeneity and potential intersample variability of many of the category A to C bioterrorism agents offer a particular challenge to the generation of attributive signatures, potentially requiring whole-genome or proteomic approaches to be utilized. Currently, irradiation of mail is standard practice at several government facilities judged to be at particularly high risk. Thus, initial forensic signatures would need to be recovered from inactivated (nonviable) material. In the study described in this report, we determined the effects of high-dose gamma irradiation on forensic markers of bacterial biothreat agent surrogate organisms with a particular emphasis on the suitability of genomic DNA (gDNA) recovered from such sources as a template for whole-genome analysis. While irradiation of spores and vegetative cells affected the retention of Gram and spore stains and sheared gDNA into small fragments, we found that irradiated material could be utilized to generate accurate whole-genome sequence data on the Illumina and Roche 454 sequencing platforms.

摘要

对潜在生物攻击中使用的材料进行有效的微生物法医分析,需要采用强大的方法对攻击材料进行形态学和遗传学表征,以便将这些材料归因于潜在来源并排除其他潜在来源。许多A类至C类生物恐怖主义制剂的基因同质性和潜在的样本间变异性,给生成归因特征带来了特殊挑战,可能需要采用全基因组或蛋白质组学方法。目前,在几个被判定为风险特别高的政府设施中,对邮件进行辐照是标准做法。因此,最初的法医特征需要从灭活(无活力)材料中获取。在本报告所述的研究中,我们确定了高剂量伽马辐照对细菌生物威胁剂替代生物法医标记物的影响,特别强调了从此类来源回收的基因组DNA(gDNA)作为全基因组分析模板的适用性。虽然孢子和营养细胞的辐照影响革兰氏染色和芽孢染色的保留,并将gDNA剪切成小片段,但我们发现辐照材料可用于在Illumina和Roche 454测序平台上生成准确的全基因组序列数据。

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