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A Novel Rapid DNA Microarray Assay Enables Identification of 37 Mycoplasma Species and Highlights Multiple Mycoplasma Infections

机译:一种新型的快速DNA芯片检测能够鉴定37种支原体,并突出显示多种支原体感染

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摘要

Mycoplasmas comprise a conglomerate of pathogens and commensals occurring in humans and animals. The genus Mycoplasma alone contains more than 120 species at present, and new members are continuously being discovered. Therefore, it seems promising to use a single highly parallel detection assay rather than develop separate tests for each individual species. In this study, we have designed a DNA microarray carrying 70 oligonucleotide probes derived from the 23S rRNA gene and 86 probes from the tuf gene target regions. Following a PCR amplification and biotinylation step, hybridization on the array was shown to specifically identify 31 Mycoplasma spp., as well as 3 Acholeplasma spp. and 3 Ureaplasma spp. Members of the Mycoplasma mycoides cluster can be recognized at subgroup level. This procedure enables parallel detection of Mollicutes spp. occurring in humans, animals or cell culture, from mono- and multiple infections, in a single run. The main advantages of the microarray assay include ease of operation, rapidity, high information content, and affordability. The new test's analytical sensitivity is equivalent to that of real-time PCR and allows examination of field samples without the need for culture. When 60 field samples from ruminants and birds previously analyzed by denaturing-gradient gel electrophoresis (DGGE) were tested by the microarray assay both tests identified the same agent in 98.3% of the cases. Notably, microarray testing revealed an unexpectedly high proportion (35%) of multiple mycoplasma infections, i.e., substantially more than DGGE (15%). Two of the samples were found to contain four different Mycoplasma spp. This phenomenon deserves more attention, particularly its implications for epidemiology and treatment.
机译:支原体由人类和动物中的病原体和共生体组成。目前仅支原体属就包含120多种,并且不断发现新成员。因此,似乎有希望使用单个高度并行的检测方法,而不是针对每个单独的物种开发单独的测试。在这项研究中,我们设计了一种DNA芯片,该芯片带有70个来源于23S rRNA基因的寡核苷酸探针和86个来自tuf基因靶区域的探针。经过PCR扩增和生物素化步骤后,显示在阵列上的杂交可特异性鉴定31个支原体和3个横纹肌。和3个Ureaplasma spp。支原体支原体簇的成员可以在亚组水平识别。此过程可以并行检测Mollicutes spp。单次或多次感染在人类,动物或细胞培养中发生。微阵列测定法的主要优点包括操作简便,快速,信息量高和可负担性。新测试的分析灵敏度与实时PCR相当,无需培养即可检查现场样品。当通过微阵列分析法对60个先前通过变性梯度凝胶电泳(DGGE)分析的反刍动物和禽类的野外样品进行了测试时,两种测试均在98.3%的病例中鉴定出相同的病原体。值得注意的是,微阵列测试显示出多种支原体感染出乎意料的高比例(35%),即大大超过了DGGE(15%)。发现其中两个样本包含四个不同的支原体。这种现象值得更多关注,特别是它对流行病学和治疗的影响。

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