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Shotgun metagenomics of dust microbiome from flight deck and cabin in civil aviation aircraft

机译:来自飞行甲板和民航飞机的飞行甲板和舱室粉尘微生物的霰弹枪Metagenomics

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摘要

Microbial exposure is related to the health of passengers on commercial aircraft, but no studies characterized the microbial composition at the species level and identified their ecological determinants. We collected vacuum dust from floor and seat surfaces in flight decks and cabins of 18 aircraft, and amplification-free shotgun metagenomics was conducted to characterize the microbial composition. In total,7437 microbial taxa were identified. The relative abundance for bacteria, eukaryote,viruses, and archaea was 96.9%, 1.8%, 0.3%, and 0.03%, respectively. The top bacterial species mainly derived from outdoor air and human skin included Sphingomonas,Corynebacterium, Micrococcus luteus, Variovorax paradoxus, Paracoccus dentrificans,and Propionibacterium acnes. The abundance of NIAID-defined pathogens was low,accounted for only 0.23% of total microbes. The microbial species and functional composition were structured by the indoor surface type (R~2 = 0.38, Adonis), followed by the manufacturer of the aircraft (R~2 = 0.12) and flight duration (R~2 = 0.07). Indoor surfaces affected species derived from different habitats; the abundance of dry skin and desiccated species was higher on textile surfaces, whereas the abundance of moist and oily skin species was higher on leather surfaces. The growth rates for most microbes were stopped and almost stopped.
机译:微生物暴露与商业飞机上乘客的健康有关,但没有研究表征物种水平的微生物组合物,并确定了它们的生态决定因素。我们从18架飞机的飞行甲板和舱室中收集从地板和座椅表面的真空灰尘,并进行扩增的霰弹枪偏心组件以表征微生物组合物。总共,鉴定了7437个微生物分类群。细菌,真核生物的相对丰度,病毒和古代分别为96.9%,1.8%,0.3%和0.03%。主要来自室外空气和人体皮肤的顶部细菌种包括鞘氨醇,棒状杆菌,微皮带,叶绿酱悖论,帕拉科氏菌,牙科病,和丙酸盐杆菌。婚姻定义的病原体的丰度低,仅占总微生物的0.23%。微生物物种和功能组合物由室内表面型(R〜2 = 0.38,Adonis)构成,其次是飞机制造商(R〜2 = 0.12)和飞行持续时间(R〜2 = 0.07)。室内表面影响来自不同栖息地的物种;在纺织表面上的干燥皮肤和干燥物种的丰度较高,而皮革表面的丰富性和油性皮肤种类较高。大多数微生物的生长率被停止,几乎停止了。

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  • 来源
    《Indoor Air》 |2020年第6期|1199-1212|共14页
  • 作者单位

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou China;

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Department of Occupational and Environmental Health School of Public Health Sun Yat-sen University Guangzhou China;

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou China;

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou China;

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou China;

    Occupational and Environmental Medicine Department of Medical Science University Hospital Uppsala University Uppsala Sweden;

    Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms College of Life Sciences South China Agricultural University Guangzhou China Key Laboratory of Zoonosis of Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou China;

    Occupational and Environmental Medicine Department of Medical Science University Hospital Uppsala University Uppsala Sweden;

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

    bacteria; civil aviation aircraft; derived habitats; indoor microbiome; metagenomics; viruses;

    机译:细菌;民航飞机;衍生的栖息地;室内微生物组;metagenomics;病毒;

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