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Seasonal dynamics of DNA and RNA viral bioaerosol communities in a daycare center

机译:DNA和RNA病毒生物生物生物溶质社区在日托中心的季节性动态

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Viruses play an important role in ecosystems, including the built environment (BE). While numerous studies have characterized bacterial and fungal microbiomes in the BE, few have focused on the viral microbiome (virome). Longitudinal microbiome studies provide insight into the stability and dynamics of microbial communities; however, few such studies exist for the microbiome of the BE, and most have focused on bacteria. Here, we present a longitudinal, metagenomic-based analysis of the airborne DNA and RNA virome of a children's daycare center. Specifically, we investigate how the airborne virome varies as a function of season and human occupancy, and we identify possible sources of the viruses and their hosts, mainly humans, animals, plants, and insects. Season strongly influenced the airborne viral community composition, and a single sample collected when the daycare center was unoccupied suggested that occupancy also influenced the community. The pattern of influence differed between DNA and RNA viromes. Human-associated viruses were much more diverse and dominant in the winter, while the summertime virome contained a high relative proportion and diversity of plant-associated viruses. This airborne microbiome in this building exhibited seasonality in its viral community but not its bacterial community. Human occupancy influenced both types of communities. By adding new data about the viral microbiome to complement burgeoning information about the bacterial and fungal microbiomes, this study contributes to a more complete understanding of the airborne microbiome.
机译:病毒在生态系统中发挥着重要作用,包括建造环境(BE)。虽然众多研究表征了细菌和真菌微生物体,但很少集中在病毒微生物组(病毒体)上。纵向微生物组研究提供了对微生物社区的稳定性和动态的洞察力;然而,少数人的微生物组存在,并且大多数人都集中在细菌上。在这里,我们提出了对儿童日托中心的空中DNA和RNA病毒组的基于纵向,偏见的基础分析。具体而言,我们调查空气传播的生物组如何随着季节和人类入住的函数而变化,并且我们确定病毒和宿主的可能来源,主要是人,动物,植物和昆虫。季节强烈影响了空中病毒群落组成,当东日内中心未占用时收集的单一样品表明,入住也影响了社区。 DNA和RNA病毒素之间的影响模式不同。冬季人类相关病毒更加多样化,夏季病毒体含有高相对比例和多样性的植物相关病毒。这座建筑中的这种空中微生物组在其病毒群落中展出了季节性,但不是其细菌群落。人类入住影响了两种类型的社区。通过增加有关病毒微生物组的新数据来补充有关细菌和真菌微生物瘤的蓬勃发展信息,这项研究有助于更完全了解空中微生物组。

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