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Metagenomic Insights into the Bioaerosols in the Indoor and Outdoor Environments of Childcare Facilities

机译:托儿设施室内和室外环境中生物气溶胶的元基因组学见解

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摘要

Airborne microorganisms have significant effects on human health, and children are more vulnerable to pathogens and allergens than adults. However, little is known about the microbial communities in the air of childcare facilities. Here, we analyzed the bacterial and fungal communities in 50 air samples collected from five daycare centers and five elementary schools located in Seoul, Korea using culture-independent high-throughput pyrosequencing. The microbial communities contained a wide variety of taxa not previously identified in child daycare centers and schools. Moreover, the dominant species differed from those reported in previous studies using culture-dependent methods. The well-known fungi detected in previous culture-based studies (Alternaria, Aspergillus, Penicillium, and Cladosporium) represented less than 12% of the total sequence reads. The composition of the fungal and bacterial communities in the indoor air differed greatly with regard to the source of the microorganisms. The bacterial community in the indoor air appeared to contain diverse bacteria associated with both humans and the outside environment. In contrast, the fungal community was largely derived from the surrounding outdoor environment and not from human activity. The profile of the microorganisms in bioaerosols identified in this study provides the fundamental knowledge needed to develop public health policies regarding the monitoring and management of indoor air quality.
机译:空气传播的微生物会对人类健康产生重大影响,儿童比成年人更容易感染病原体和过敏原。但是,对于保育设施中的微生物群落知之甚少。在这里,我们使用与文化无关的高通量焦磷酸测序技术,对位于韩国首尔的5个日托中心和5所小学的50个空气样本中的细菌和真菌群落进行了分析。微生物群落包含各种各样的分类单元,以前在儿童日托中心和学校中没有发现。而且,优势种不同于以前的研究中使用培养依赖性方法的报道。在以前的基于培养的研究中检测到的著名真菌(Alternaria,Aspergillus,Penicillium和Cladosporium)占总序列读数的不到12%。就微生物来源而言,室内空气中真菌和细菌群落的组成差异很大。室内空气中的细菌群落似乎包含与人类和外部环境相关的多种细菌。相反,真菌群落主要来自周围的室外环境,而不是人类活动。本研究中确定的生物气溶胶中微生物的概况提供了开发有关室内空气质量监测和管理的公共卫生政策所需的基本知识。

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