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Vertical Stratification in Urban Green Space Aerobiomes

机译:城市绿地健全的垂直分层

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Background: Exposure to a diverse environmental microbiome is thought to play an important role in “educating” the immune system and facilitating competitive exclusion of pathogens to maintain human health. Vegetation and soil are key sources of airborne microbiota––the aerobiome. A limited number of studies have attempted to characterize the dynamics of near surface green space aerobiomes, and no studies to date have investigated these dynamics from a vertical perspective. Vertical stratification in the aerobiome could have important implications for public health and for the design, engineering, and management of urban green spaces. Objectives: The primary objectives of this study were to: a ) assess whether significant vertical stratification in bacterial species richness and evenness (alpha diversity) of the aerobiome occurred in a parkland habitat in Adelaide, South Australia; b ) assess whether significant compositional differences (beta diversity) between sampling heights occurred; and c ) to preliminarily assess whether there were significant altitudinal differences in potentially pathogenic and beneficial bacterial taxa. Methods: We combined an innovative columnar sampling method at soil level, 0.0, 0.5, 1.0, and 2.0 m , using passive petri dish sampling to collect airborne bacteria. We used a geographic information system (GIS) to select study sites, and we used high-throughput sequencing of the bacterial 16S rRNA gene to assess whether significant vertical stratification of the aerobiome occurred. Results: Our results provide evidence of vertical stratification in both alpha and beta (compositional) diversity of airborne bacterial communities, with diversity decreasing roughly with height. We also found significant vertical stratification in potentially pathogenic and beneficial bacterial taxa. Discussion: Although additional research is needed, our preliminary findings point to potentially different exposure attributes that may be contingent on human height and activity type. Our results lay the foundations for further research into the vertical characteristics of urban green space aerobiomes and their implications for public health and urban planning.
机译:背景:暴露于各种环境微生物组中,被认为在“教育”免疫系统中发挥着重要作用,并促进竞争排斥病原体以维持人类健康。植被和土壤是空中微生物群的关键来源 - 有氧细胞。有限数量的研究已经尝试表征近地表绿色空间的动态,并且没有迄今为止的研究已经从垂直角度调查了这些动态。 Aerobiome中的垂直分层可能对公共卫生和城市绿地的设计,工程和管理具有重要意义。目的:本研究的主要目标是:a)评估有氧细菌物种丰富性和均匀性(Alpha多样性)的垂直分层是否发生在南澳大利亚阿德莱德的公园栖息地; b)评估采样高度之间的显着的组成差异(β多样性)是否发生; c)初步评估是否存在潜在的致病和有益的细菌分类群中存在显着的完美差异。方法:采用无源培养皿采样,将创新的柱状取样方法组合在土壤水平,0.0,0.5,1.0和2.0米处,以收集空气中的细菌。我们使用了地理信息系统(GIS)来选择学习网站,并且我们使用了细菌16s rRNA基因的高通量测序,以评估是否发生了有效的有效性垂直分层。结果:我们的结果提供了α和β(组成)的空气中细菌社区的α和β(组成)多样性的证据,具有大致高度的多样性。我们还发现了潜在的致病性和有益的细菌分类群中的显着垂直分层。讨论:虽然需要额外的研究,但我们的初步结果指向可能存在于人类高度和活动类型的可能不同的曝光属性。我们的成果奠定了进一步研究城市绿地健美操的纵向特征及其对公共卫生和城市规划的影响。

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