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人工构建的模拟多种生物威胁因子的质粒。

Artificial plasmid engineered to simulate multiple biological threat agents.

作者信息

Carrera Monica, Sagripanti Jose-Luis

机构信息

Edgewood Chemical Biological Center, Research Development and Engineering Command US Army, AMSRD-ECB-RT, Aberdeen Proving Ground, Aberdeen, MD 21010-5424, USA.

出版信息

Appl Microbiol Biotechnol. 2009 Jan;81(6):1129-39. doi: 10.1007/s00253-008-1715-8. Epub 2008 Oct 16.

Abstract

The objective of this study was to develop a non-virulent simulant to replace several virulent organisms during the development of detection and identification methods for biological threat agents. We identified and selected specific genes to detect Yersinia pestis, Francisella tularensis, Burkholderia mallei, Burkholderia pseudomallei, Rickettsia sp., Coxiella burnetii, Brucella sp., enterohemorrhagic Escherichia coli O157:H7, Bacillus anthracis, and variola (smallpox) virus. We then designed and engineered a non-infectious simulant that included the nucleic-acid signature of each microorganism in a single chimerical molecule. Here, we reported an approach that by direct (de novo) chemical synthesis permitted the production of a single chimerical construct 2,040 bp long that included the nucleic-acid signature of the bacterial and viral biological threat agents listed above without requiring access to these agents. Sequences corresponding to each one of the biological agents in the synthetic simulant were amplified by PCR, resulting in amplicons of the expected length, of similar intensity, and without any detectable unspecific products. The novel simulant described here could reduce the need for infectious agents in the development of detection and diagnostic methods and should also be useful as a non-virulent positive control in nucleic-acid-based tests against biological threat agents.

摘要

本研究的目的是开发一种无毒模拟物,以在生物威胁因子检测和鉴定方法的开发过程中替代几种有毒生物体。我们鉴定并选择了特定基因,用于检测鼠疫耶尔森菌、土拉弗朗西斯菌、鼻疽伯克霍尔德菌、类鼻疽伯克霍尔德菌、立克次氏体属、贝纳柯克斯体、布鲁氏菌属、肠出血性大肠杆菌O157:H7、炭疽芽孢杆菌和天花病毒。然后,我们设计并构建了一种非感染性模拟物,该模拟物在单个嵌合分子中包含每种微生物的核酸特征。在此,我们报告了一种方法,即通过直接(从头)化学合成,可以生产出一个长度为2040 bp的单一嵌合构建体,该构建体包含上述细菌和病毒生物威胁因子的核酸特征,而无需获取这些因子。通过聚合酶链反应(PCR)扩增合成模拟物中与每种生物制剂相对应的序列,得到预期长度、强度相似且无任何可检测到的非特异性产物的扩增子。本文所述的新型模拟物可以减少检测和诊断方法开发中对感染性因子的需求,并且还应可用作针对生物威胁因子的基于核酸的检测中的无毒阳性对照。

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