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Multiple and simultaneous detection of specific bacteria in enriched bacterial communities using a DNA microarray chip with randomly generated genomic DNA probes

机译:使用带有随机生成的基因组DNA探针的DNA微阵列芯片,同时检测富集细菌群落中的特定细菌

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A DNA microarray chip for detecting the presence of specific bacterial strains was developed using random genomic probes derived from genomic DNA, i.e., without any sequence information. Thirteen bacteria from different genuses were selected as targets. For the fabrication of the random genomic probes, genomic DNA from pure cultures of each bacterium was fractionated using several pairs of restriction endonucleases. After size fractionation of the genomic DNA fragments, random genomic libraries for each bacterium were constructed. From the library, specific probes were amplified by PCR and the probes were affixed to a slide glass to fabricate the DNA microarray chip. The results from tests with pure and mixed cultures of the bacteria used in the fabrication of the chips showed specific responses and only a small portion of cross-hybridization. This DNA microarray chip was also tested to detect the presence of specific bacteria in mixed populations. In these tests, it was demonstrated that this system provided a fast and specific response to the presence of bacterial species in mixed samples, even in activated sludge samples. This indicates that any DNA microarray chip for the detection of specific bacteria can be fabricated using the same protocols as presented in this study without requiring any genus level sequence information from pure isolates.
机译:使用衍生自基因组DNA的随机基因组探针,即没有任何序列信息,开发了用于检测特定细菌菌株存在的DNA微阵列芯片。选择了来自不同属的十三种细菌作为靶标。为了制备随机基因组探针,使用几对限制性核酸内切酶对每种细菌纯培养物的基因组DNA进行分级分离。在对基因组DNA片段进行大小分级后,构建每种细菌的随机基因组文库。从文库中,通过PCR扩增特异性探针,并将探针固定在载玻片上,以制造DNA微阵列芯片。芯片制造中所用细菌的纯培养物和混合培养物的测试结果显示出特定的响应,并且只有一小部分交叉杂交。还对该DNA微阵列芯片进行了测试,以检测混合种群中特定细菌的存在。在这些测试中,证明了该系统对混合样品(即使是活性污泥样品)中细菌的存在提供了快速而特定的响应。这表明可以使用与本研究相同的方案来制造用于检测特定细菌的任何DNA微阵列芯片,而无需来自纯分离株的任何属水平序列信息。

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