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Performance evaluation of high-volume electret filter air samplers in aerosol microbiome research

机译:高批驻极体过滤空气采样器在气溶胶微生物梭研究中的性能评估

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Reliable identification and quantification of bioaerosols is fundamental in aerosol microbiome research, highlighting the importance of using sampling equipment with well-defined performance characteristics. Following advances in sequencing technology, shotgun metagenomic sequencing (SMS) of environmental samples is now possible. However, SMS of air samples is challenging due to low biomass, but with the use of high-volume air samplers sufficient DNA yields can be obtained. Here we investigate the sampling performance and comparability of two hand-portable, battery-operated, high-volume electret filter air samplers, SASS 3100 and ACD-200 Bobcat, previously used in SMS-based aerosol microbiome research. SASS and Bobcat consistently delivered end-to-end sampling efficiencies ?80% during the aerosol chamber evaluation, demonstrating both as effective high-volume air samplers capable of retaining quantitative associations. Filter recovery efficiencies were investigated with manual and sampler-specific semi-automated extraction procedures. Bobcat semi-automated extraction showed reduced efficiency compared to manual extraction. Bobcat tended towards higher sampling efficiencies compared to SASS when combined with manual extraction. To evaluate real-world sampling performance, side-by-side SASS and Bobcat sampling was done in a semi-suburban outdoor environment and subway stations. SMS-based microbiome profiles revealed that highly abundant bacterial species had similar representation across samplers. While alpha diversity did not vary for the two samplers, beta diversity analyses showed significant within-pair variation in subway samples. Certain species were found to be captured only by one of the two samplers, particularly in subway samples. SASS and Bobcat were both found capable of collecting sufficient aerosol biomass amounts for SMS, even at sampling times down to 30?min. Bobcat semi-automated filter extraction was shown to be less effective than manual filter extraction. For the most abundant species the samplers were comparable, but systematic sampler-specific differences were observed at species level. This suggests that studies conducted with these highly similar air samplers can be compared in a meaningful way, but it would not be recommended to combine samples from the two samplers in joint analyses. The outcome of this work contributes to improved selection of sampling equipment for use in SMS-based aerosol microbiome research and highlights the importance of acknowledging bias introduced by sampling equipment and sample recovery procedures.
机译:Bioaerosols的可靠鉴定和定量是气溶胶微生物组研究的基础,突出了使用采样设备具有明确定义的性能特征的重要性。在测序技术的进展之后,现在可能的环境样品的霰弹枪偏心测序(SMS)。然而,由于低生物质,空气样品的SMS是挑战,但是利用大量空气采样器可以获得足够的DNA产率。在这里,我们研究了两种手动便携式电池供电,高批量驻极体滤波器空气采样器,SASS 3100和ACD-200 Bobcat的采样性能和可比性,以前用于SMS的气溶胶微生物组研究。 Sass和Bobcat在气溶胶室评估期间始终如一地提供端到端采样效率> 80%,证明能够保留定量关联的有效大容量空气采样器。通过手动和采样器特定的半自动提取程序调查过滤器恢复效率。与手动提取相比,Bobcat半自动提取显示效率降低。与手动提取结合时,与SASS相比,Bobcat倾向于更高的采样效率。为了评估现实世界的采样性能,并排SASS和Bobcat采样在半郊区户外环境和地铁站完成。基于SMS的微生物型概况显示,高度丰富的细菌物种跨越采样器具有相似的表示。虽然两种采样器没有因其不同而异的多样性,但是β多样性分析显示出地铁样品的对型内变化。发现某些物种仅被两种采样器中的一个捕获,特别是在地铁样本中。 Sass和Bobcat均发现能够收集SMS的足够的气溶胶生物量量,即使在取样时间下降到30?min。山猫半自动过滤器提取显示,比手动过滤器提取更低。对于最丰富的物种,采样器具有可比性,但在物种水平下观察到系统的采样器特异性差异。这表明,通过这些高度相似的空气采样器进行的研究可以以有意义的方式进行比较,但不建议将来自两个采样器中的样品组合在联合分析中。这项工作的结果有助于改进用于SMS的气溶胶微生物组研究的采样设备的选择,并突出了通过采样设备和样品恢复程序引入的承认偏差的重要性。

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