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首页> 外文期刊>Journal of infection and public health. >High throughput sequencing-based analysis of microbial diversity in dental unit waterlines supports the importance of providing safe water for clinical use
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High throughput sequencing-based analysis of microbial diversity in dental unit waterlines supports the importance of providing safe water for clinical use

机译:基于高通量测序的牙科单位吃水线微生物多样性分析支持为临床使用提供安全水的重要性

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摘要

This study aims to explore the water quality of dental unit waterlines (DUWLs) and the diversity of microbial communities in DUWLs. Water samples from 33 dental chair units (DCUs) were collected, diluted and then spread on sterilized R2A plate for incubation. Subsequently, the microbial colony-forming units per milliliter (CFU/ml) were recorded by an automatic colony analyzer. Total DNA extracted from the rest of the samples was tested on the Illumina MiSeq PE300 platform. T-test and Kruskal–Wallis rank test were adopted for statistical analysis. Significance was assumed at a P ? ? 0.05. After incubation, the average total microbial count was 21,413.13 ? ± ? 17,861.00 ? CFU/ml. High-throughput sequencing revealed 10 bacterial phyla, including 9 identified and 1 unclassified phyla. Totally 63 sequences were identified at the genus level, including 42 genera, 3 tentative species and 18 unclassified genera. In addition, 7 potential human pathogenic bacteria were detected. In summary, department, brand and service life of DCUs do not influence the water quality of DUWLs significantly. The diversity of microbial communities in DUWLs is abundant and includes both pathogenic and some unknown bacteria.
机译:这项研究旨在探讨牙科单位水线(DUWLs)的水质以及DUWLs中微生物群落的多样性。收集来自33个牙科椅单元(DCU)的水样品,进行稀释,然后将其铺在无菌R2A板上进行孵育。随后,通过自动菌落分析仪记录每毫升的微生物菌落形成单位(CFU / ml)。从其余样品中提取的总DNA在Illumina MiSeq PE300平台上进行了测试。采用T检验和Kruskal–Wallis等级检验进行统计分析。假设显着性为P? <? 0.05。孵育后,平均总微生物数为21,413.13?。 ±? 17,861.00吗? CFU /毫升。高通量测序显示10个细菌门,包括9个已识别门和1个未分类门。在属水平上总共鉴定出63个序列,包括42属,3个试种和18个未分类属。此外,还发现了7种潜在的人类致病细菌。总之,DCU的部门,品牌和使用寿命不会显着影响DUWL的水质。 DUWL中微生物群落的多样性非常丰富,既包括病原细菌,也包括一些未知细菌。

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