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Genotyping of Giardia duodenalis Cysts by New Real-Time PCR Assays for Detection of Mixed Infections in Human Samples▿

机译:新的实时荧光定量PCR技术检测十二指肠囊肿的基因型,以检测人类样品中的混合感染

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摘要

Of the seven genetic groups, or assemblages, currently recognized in the Giardia duodenalis species complex, only assemblages A and B are associated with human infection, but they also infect other mammals. Recent investigations have suggested the occurrence of genetic exchanges among isolates of G. duodenalis, and the application of assemblage-specific PCR has shown both assemblages A and B in a significant number of human infections. In this work, three real-time quantitative (qPCR) assays were developed to target the G. duodenalis triose phosphate isomerase, glutamate dehydrogenase, and open reading frame C4 sequences. Primers were designed to allow the specific amplification of the DNA of assemblage A or B and to generate products distinguishable by their melting curves or, after qPCR, by their sequences, sizes, or restriction patterns. The assays showed full specificity and detected DNA from a single trophozoite (4 to 8 target copies). We applied these assays, as well as a TaqMan assay that targets the β-giardin gene, to genomic DNA extracted from 30 human stools and to Giardia cysts purified by immunomagnetic capture from the same samples. Simultaneous detection of both assemblages was observed in a large number of DNAs extracted from stools, and experiments on the cysts purified from the same samples showed that this was essentially attributable to mixed infections, as only one assemblage was detected when dilutions of cysts were tested. In a few cases, detection of both assemblages was observed even when single cysts were tested. This result, which suggests the presence of recombinants, needs to be confirmed using more accurate methods for cyst separation and enumeration. The assays described in this study can be used to detect Giardia cysts infectious to humans in samples from animals and in water and food.
机译:目前在十二指肠贾第鞭毛虫物种复合体中识别的七个基因组或组合,只有组合A和B与人类感染有关,但它们也感染其他哺乳动物。最近的研究表明十二指肠球菌的分离株之间发生了遗传交换,而组合特异性PCR的应用表明在大量的人类感染中组合A和B都存在。在这项工作中,开发了三种实时定量(qPCR)测定法来靶向十二指肠甘油三糖磷酸异构酶,谷氨酸脱氢酶和开放阅读框C4序列。设计引物是为了特异性扩增组合物A或B的DNA,并生成可通过其熔解曲线或qPCR后,通过其序列,大小或限制模式区分的产物。该测定法显示出完全的特异性,并从单个滋养体(4至8个目标拷贝)中检测到DNA。我们将这些检测方法以及针对β-贾第蛋白基因的TaqMan检测方法应用于从30个人粪便中提取的基因组DNA以及通过免疫磁捕获从相同样品中纯化的贾第虫囊肿。在从粪便中提取的大量DNA中可以同时检测到两种组合物,并且对从相同样品中纯化的囊肿进行的实验表明,这基本上归因于混合感染,因为测试囊肿稀释液时只能检测到一种组合物。在少数情况下,即使对单个囊肿进行测试,也可以同时检测到两种组合。该结果表明重组体的存在,需要使用更准确的囊肿分离和计数方法进行确认。这项研究中描述的测定法可用于检测动物样本,水和食物中对人有感染力的贾第虫囊肿。

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