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Multiplex PCR allows simultaneous detection of pathogens in ships' ballast water

机译:多重PCR可同时检测船舶压舱水中的病原体

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There is enormous potential for global transfer of microorganisms, including pathogens, in ships' ballast water. We contend that a major advancement in the study of ballast-water microorganisms in particular, and of aquatic pathogens in general, will be expedited sample analysis, such as provided by the elegant technology of DNA microarrays. In order to use DNA microarrays, however, one must establish the appropriate conditions to bind target sequences in samples to multiple probes on the microarrays. We conducted proof-of-concept experiments to optimize simultaneous detection of multiple microorganisms using polymerase chain reaction (PCR) and Southern hybridization. We chose three target organisms, all potentially found in ballast water: a calicivirus, the bacterium Vibrio cholerae, and the photosynthetic protist Aureococcus anophagefferens. Here, we show simultaneous detection of multiple pathogens is possible, a result supporting the promising future use of microarrays for simultaneous detection of pathogens in ballast water.
机译:在船舶压载水中,包括病原体在内的微生物的全球转移潜力巨大。我们认为,压载水微生物尤其是水生病原体研究的重大进展将加速样品分析,例如DNA微阵列的先进技术所提供的样品分析。然而,为了使用DNA微阵列,必须建立适当的条件以将样品中的靶序列与微阵列上的多个探针结合。我们进行了概念验证实验,以优化使用聚合酶链反应(PCR)和Southern杂交的多种微生物的同时检测。我们选择了三种目标生物,它们都可能在压舱水中发现:杯状病毒,霍乱弧菌和光合作用的原生动物嗜热单胞菌(Aureococcus anophagefferens)。在这里,我们显示同时检测多种病原体是可能的,这一结果支持了微阵列在压载水中同时检测病原体的有希望的未来用途。

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