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Detection and tracking of a novel genetically tagged biological simulant in the environment

机译:环境中新型基因标记生物模拟物的检测和跟踪

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摘要

A variant of Bacillus thuringiensis subsp. kurstaki containing a single, stable copy of a uniquely amplifiable DNA oligomer integrated into the genome for tracking the fate of biological agents in the environment was developed. The use of genetically tagged spores overcomes the ambiguity of discerning the test material from pre-existing environmental microflora or from previously released background material. In this study, we demonstrate the utility of the genetically "barcoded" simulant in a controlled indoor setting and in an outdoor release. In an ambient breeze tunnel test, spores deposited on tiles were reaerosolized and detected by real-time PCR at distances of 30mfrom the point of deposition. Real-time PCR signals were inversely correlated with distance from the seeded tiles. An outdoor release of powdered spore simulant at Aberdeen Proving Ground, Edgewood, MD, was monitored from a distance by a light detection and ranging (LIDAR) laser. Over a 2-week period, an array of air sampling units collected samples were analyzed for the presence of viable spores and using barcode-specific real-time PCR assays. Barcoded B. thuringiensis subsp. kurstaki spores were unambiguously identified on the day of the release, and viable material was recovered in a pattern consistent with the cloud track predicted by prevailing winds and by data tracks provided by the LIDAR system. Finally, the real-time PCR assays successfully differentiated barcoded B. thuringiensis subsp. kurstaki spores from wildtype spores under field conditions.
机译:开发了一种苏云金芽孢杆菌亚种的变体,其中包含整合到基因组中的独特可扩增 DNA 寡聚体的单个稳定拷贝,用于跟踪环境中生物制剂的命运。使用基因标记的孢子克服了将测试材料与预先存在的环境微生物群落或先前释放的背景材料区分开来的模糊性。在这项研究中,我们展示了基因“条形码”模拟物在受控室内环境和室外释放中的效用。在环境微风隧道测试中,沉积在瓷砖上的孢子被重新雾化,并在距离沉积点30m的距离处通过实时PCR进行检测。实时荧光定量PCR信号与接种切块的距离呈负相关。在马里兰州埃奇伍德的阿伯丁试验场,通过光探测和测距 (LIDAR) 激光器从远处监测粉末孢子模拟物的室外释放。在为期 2 周的时间内,使用条形码特异性实时荧光定量 PCR 检测,对收集的一系列空气采样单元样品进行了分析,以确定是否存在活孢子。在释放当天,明确鉴定了条形码的苏云金芽孢杆菌亚种库尔斯塔基孢子,并以与盛行风预测的云迹和激光雷达系统提供的数据轨迹一致的模式回收了活物质。最后,实时荧光定量PCR检测成功区分了条形码苏云金芽孢杆菌亚种。在田间条件下从野生型孢子中获取的 kurstaki 孢子。

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