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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Dispersal in microbes: Fungi in indoor air are dominated by outdoor air and show dispersal limitation at short distances
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Dispersal in microbes: Fungi in indoor air are dominated by outdoor air and show dispersal limitation at short distances

机译:在微生物中的扩散:室内空气中的真菌主要由室外空气控制,并且在短距离内显示出扩散限制

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The indoor microbiome is a complex system that is thought to depend on dispersal from the outdoor biome and the occupants' microbiome combined with selective pressures imposed by the occupants' behaviors and the building itself. We set out to determine the pattern of fungal diversity and composition in indoor air on a local scale and to identify processes behind that pattern. We surveyed airborne fungal assemblages within 1-month time periods at two seasons, with high replication, indoors and outdoors, within and across standardized residences at a university housing facility. Fungal assemblages indoors were diverse and strongly determined by dispersal from outdoors, and no fungal taxa were found as indicators of indoor air. There was a seasonal effect on the fungi found in both indoor and outdoor air, and quantitatively more fungal biomass was detected outdoors than indoors. A strong signal of isolation by distance existed in both outdoor and indoor airborne fungal assemblages, despite the small geographic scale in which this study was undertaken (<500 m). Moreover, room and occupant behavior had no detectable effect on the fungi found in indoor air. These results show that at the local level, outdoor air fungi dominate the patterning of indoor air. More broadly, they provide additional support for the growing evidence that dispersal limitation, even on small geographic scales, is a key process in structuring the often-observed distance-decay biogeographic pattern in microbial communities.
机译:室内微生物群是一个复杂的系统,被认为取决于室外生物群落和居住者微生物群的扩散,以及居住者行为和建筑物本身施加的选择性压力。我们着手确定局部尺度上室内空气中真菌多样性和组成的模式,并确定该模式背后的过程。我们在两个季节的1个月内调查了空气传播的真菌组合,在大学住宿设施的标准住所之内和之间,在室内和室外都有很高的复制率。室内的真菌组合是多种多样的,并且强烈地取决于从室外的散布,并且没有发现真菌类群作为室内空气的指示。对室内和室外空气中发现的真菌都有季节性影响,并且在室外检测到的真菌生物量在数量上要比室内更多。尽管进行本研究的地理规模较小(<500 m),但在室内和室外机载真菌组合物中均存在强距离隔离信号。此外,房间和乘员的行为对室内空气中发现的真菌没有可检测的影响。这些结果表明,在地方一级,室外空气真菌主导着室内空气的形态。更广泛地说,它们为越来越多的证据提供了进一步的支持,即即使在很小的地理范围内,扩散限制也是构建微生物群落中经常观察到的距离衰减生物地理模式的关键过程。

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