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Development of new host-specific Bacteroides qPCRs for the identification of fecal contamination sources in water

机译:用于鉴定水中粪便污染源的新型宿主特异性拟杆菌QPCR的开发

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摘要

Bacteroides spp. have been proposed as indicators of fecal contamination in microbial source tracking (MST) methodologies. The aim of this study was to develop new qPCR assays that target host-specific Bacteroidal 16S ribosomal RNA genes, to determine the source of fecal contamination in water. Denaturing gradient gel electrophoresis (DGGE) was used to select for host-specific bands of Bacteroides associated with a fecal pollution source and later to design four qPCR host-specific assays. A set of common primers for Bacteroides spp., four different Bacteroides spp. host-associated hydrolysis probes (human, cattle, pig, and poultry), and one hydrolysis probe for the Bacteroides genus were designed. This set of qPCR assays together with other previously developed Bacteroidetes MST targets were used to analyze water samples with fecal contamination from the four sources studied. The host-specific Bacteroides qPCRs designed for human (HMprobeBac), pig (PGprobeBac), and poultry (PLprobeBac) were highly specific for its sources (1.0, 0.97, and 1.0, respectively) although its sensitivity was lower (0.45, 0.50, and 0.73, respectively). The cattle-specific qPCR was totally unspecific and was discarded for future experiments. When compared to previously designed assays, the human and pig qPCRs showed better accuracies (0.86 and 0.84) than their counterparts HF183 and Pig-2-Bac (0.38 and 0.65). Thus, the newly designed human, pig, and poultry qPCR assays outperform other methods developed until date and may be useful for source tracking purposes
机译:拟杆菌属在微生物源追踪(MST)方法中,粪便污染的指标已被提出。这项研究的目的是开发针对宿主特定细菌的16S核糖体RNA基因的新qPCR分析方法,以确定粪便污染水中的来源。变性梯度凝胶电泳(DGGE)用于选择与粪便污染源相关的拟杆菌的宿主特异性条带,随后设计四个qPCR宿主特异性测定。拟杆菌属,四种不同拟杆菌属的一套通用引物。设计了与宿主相关的水解探针(人,牛,猪和家禽),以及一种针对拟杆菌属的水解探针。这套qPCR分析与其他先前开发的拟杆菌属MST靶标一起用于分析来自四个研究来源的粪便污染的水样。尽管其敏感性较低(0.45、0.50和0.5),但专为人(HMprobeBac),猪(PGprobeBac)和家禽(PLprobeBac)设计的宿主特异性拟杆菌qPCR对其来源(分别为1.0、0.97和1.0)具有高度特异性。分别为0.73)。牛特异性qPCR完全是非特异性的,将其丢弃以用于将来的实验。与以前设计的分析方法相比,人和猪的qPCR的准确度(0.86和0.84)要好于HF183和Pig-2-Bac(0.38和0.65)。因此,新设计的人,猪和家禽qPCR分析的性能优于迄今开发的其他方法,可能对来源追踪有用

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