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A rapid high-throughput sequencing-based approach for the identification of unknown bacterial pathogens in whole blood

机译:基于高通量测序的识别全血未知细菌病原体的方法

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摘要

High-throughput DNA sequencing (HTS) of pathogens in whole blood samples is hampered by the high host/pathogen nucleic acids ratio. We describe a novel and rapid bacterial enrichment procedure whose implementation is exemplified in simulated bacteremic human blood samples. The procedure involves depletion of the host DNA, rapid HTS and bioinformatic analyses. Following this procedure, Y. pestis, F. tularensis and B. anthracis spiked-in samples displayed an improved host/pathogen DNA ratio of 2.5–5.9 orders of magnitude, in samples with bacteria spiked-in at 103–105 CFU/ml. The procedure described in this study enables rapid and detailed metagenomic profiling of pathogens within 8–9 h, circumventing the challenges imposed by the high background present in the bacteremic blood and by the unknown nature of the sample.
机译:全血样品中病原体的高通量DNA测序(HTS)由高宿主/病原体核酸比阻碍。我们描述了一种新颖的和快速的细菌富集程序,其实施是在模拟的菌药人血样中的举例说明。该方法涉及宿主DNA的耗尽,快速HTS和生物信息分析。在此过程之后,Y.Pestis,F. Turrensis和B.炭疽病样品显示出宿主/病原体DNA比率为2.5-5.9的数量级,在103-105 cfu / ml的细菌中掺入的样品中。本研究中描述的程序能够在8-9小时内实现病原体的快速和细节的雌噬细胞分析,避免了植物血液中存在的高背景和样品的未知性质施加的挑战。

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