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Bacterial communities in commercial aircraft high-efficiency particulate air (HEPA) filters assessed by PhyloChip analysis

机译:通过PhyloChip分析评估商用飞机高效微粒空气(HEPA)过滤器中的细菌群落

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摘要

Air travel can rapidly transport infectious diseases globally. To facilitate the design of biosensors for infectious organisms in commercial aircraft, we characterized bacterial diversity in aircraft air. Samples from 61 aircraft high-efficiency particulate air (HEPA) niters were analyzed with a custom microarray of 16S rRNA gene sequences (PhyloChip), representing bacterial lineages. A total of 606 subfamilies from 41 phyla were detected. The most abundant bacterial subfamilies included bacteria associated with humans, especially skin, gastrointestinal and respiratory tracts, and with water and soil habitats. Operational taxonomic units that contain important human pathogens as well as their close, more benign relatives were detected. When compared to 43 samples of urban outdoor air, aircraft samples differed in composition, with higher relative abundance of Firmicutes and Gammaproteobacteria lineages in aircraft samples, and higher relative abundance of Actinobacteria and Betaproteobacteria lineages in outdoor air samples. In addition, aircraft and outdoor air samples differed in the incidence of taxa containing human pathogens. Overall, these results demonstrate that HEPA filter samples can be used to deeply characterize bacterial diversity in aircraft air and suggest that the presence of close relatives of certain pathogens must be taken into account in probe design for aircraft biosensors.
机译:航空旅行可以在全球范围内迅速传播传染病。为了便于设计商用飞机中传染性生物的生物传感器,我们对飞机空气中的细菌多样性进行了表征。使用代表细菌谱系的16S rRNA基因序列(PhyloChip)的定制微阵列分析了61架飞机高效微粒空气(HEPA)发光体的样品。共检测到来自41个门的606个亚科。最丰富的细菌亚科包括与人类有关的细菌,尤其是与皮肤,胃肠道和呼吸道有关的细菌,以及与水和土壤生境有关的细菌。检出了含有重要人类病原体以及其近亲,更良性近亲的业务分类单位。当与43个城市室外空气样本进行比较时,飞机样本的成分有所不同,飞机样本中的Firmicutes和Gammaproteobacteria谱系相对丰度较高,室外空气样本中的放线菌和Betaproteobacteria谱系相对丰度较高。此外,飞机和室外空气样本在包含人类病原体的分类单元中的发生率也有所不同。总体而言,这些结果表明,HEPA过滤器样品可用于深度表征飞机空气中的细菌多样性,并表明在飞机生物传感器的探头设计中必须考虑某些病原体近亲的存在。

著录项

  • 来源
    《Indoor Air》 |2013年第1期|50-61|共12页
  • 作者单位

    Cognitive Tools and Data Management Department, The MITRE Corporation, Bedford, MA, USA;

    Ecology Department, Earth Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA;

    Ecology Department, Earth Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA;

    Department of Bioinformatics, Second Genome, San Bruno, CA, USA;

    Department of Mechanical and Nuclear Engineering, Kansas State University, Manhattan, KS, USA;

    Ecology Department, Earth Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA;

    Office of the Chief Engineer 2275 Rolling Run Drive The MITRE Corporation Woodlawn, MD 21244 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aircraft biosensor; probe design; 16S; microbial diversity; infectious diseases; high- efficiency particulate air filter;

    机译:飞机生物传感器探头设计16S;微生物多样性传染性疾病;高效颗粒空气过滤器;
  • 入库时间 2022-08-17 14:04:44

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