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Airborne bacterial assemblage in a zero carbon building: A case study

机译:零碳建筑中的空气传播细菌集合:一个案例研究

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摘要

Currently, there is little information pertaining to the airborne bacterial communities of green buildings. In this case study, the air bacterial community of a zero carbon building (ZCB) in Hong Kong was characterized by targeting the bacterial 16S rRNA gene. Bacteria associated with the outdoor environment dominated the indoor airborne bacterial assemblage, with a modest contribution from bacteria associated with human skin. Differences in overall community diversity, membership, and composition associated with short (day-to- day) and long-term temporal properties were detected, which may have been driven by specific environmental genera and taxa. Furthermore, time-decay relationships in community membership (based on unweighted UniFrac distances) and composition (based on weighted UniFrac distances) differed depending on the season and sampling location. A Bayesian source-tracking approach further supported the importance of adjacent outdoor air bacterial assemblage in sourcing the ZCB indoor bioaerosol. Despite the unique building attributes, the ZCB microbial assemblage detected and its temporal characteristics were not dissimilar to that of conventional built environments investigated previously. Future controlled experiments and microbial assemblage investigations of other ZCBs will undoubtedly uncover additional knowledge related to how airborne bacteria in green buildings may be influenced by their distinctive architectural attributes.
机译:当前,关于绿色建筑的空气传播细菌群落的信息很少。在本案例研究中,香港零碳建筑(ZCB)的空气细菌群落的特征是靶向细菌16S rRNA基因。与室外环境有关的细菌在室内空气传播的细菌中占主导地位,与人类皮肤有关的细菌对此贡献不大。发现了与短期(日常)和长期时间特性相关的总体社区多样性,成员资格和组成方面的差异,这可能是由特定的环境属和类群驱动的。此外,社区成员(基于未加权的UniFrac距离)和构成(基于加权的UniFrac距离)的时间衰减关系根据季节和采样位置而有所不同。贝叶斯(Bayesian)源跟踪方法进一步支持了在采购ZCB室内生物气溶胶中相邻室外空气细菌集合的重要性。尽管具有独特的建筑属性,但检测到的ZCB微生物组合及其时间特性与之前研究的常规建筑环境并无不同。未来其他ZCB的受控实验和微生物组合研究无疑将揭示有关绿色建筑中的空气传播细菌如何受到其独特建筑属性影响的其他知识。

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