大气环境中低生物量生物气溶胶的采样及新一代测序方法的研究进展

Perspectives on Sampling and New Generation Sequencing Methods for Low-Biomass Bioaerosols in Atmospheric Environments.

作者信息

Hou Jianjian, Fujiyoshi So, Perera Ishara Uhanie, Nishiuchi Yukiko, Nakajima Makiko, Ogura Daisuke, Yarimizu Kyoko, Maruyama Fumito

机构信息

Microbial Genomics and Ecology, Center for the Planetary Health and Innovation Science (PHIS), The IDEC Institute, Hiroshima University, Hiroshima, 739-0046 Japan.

Center for Holobiome and Built Environment (CHOBE), Hiroshima University, Hiroshima, 739-0046 Japan.

出版信息

J Indian Inst Sci. 2023 May 12:1-11. doi: 10.1007/s41745-023-00380-x.

Abstract

UNLABELLED

Bioaerosols play essential roles in the atmospheric environment and can affect human health. With a few exceptions (e.g., farm or rainforest environments), bioaerosol samples from wide-ranging environments typically have a low biomass, including bioaerosols from indoor environments (e.g., residential homes, offices, or hospitals), outdoor environments (e.g., urban or rural air). Some specialized environments (e.g., clean rooms, the Earth's upper atmosphere, or the international space station) have an ultra-low-biomass. This review discusses the primary sources of bioaerosols and influencing factors, the recent advances in air sampling techniques and the new generation sequencing (NGS) methods used for the characterization of low-biomass bioaerosol communities, and challenges in terms of the bias introduced by different air samplers when samples are subjected to NGS analysis with a focus on ultra-low biomass. High-volume filter-based or liquid-based air samplers compatible with NGS analysis are required to improve the bioaerosol detection limits for microorganisms. A thorough understanding of the performance and outcomes of bioaerosol sampling using NGS methods and a robust protocol for aerosol sample treatment for NGS analysis are needed. Advances in NGS techniques and bioinformatic tools will contribute toward the precise high-throughput identification of the taxonomic profiles of bioaerosol communities and the determination of their functional and ecological attributes in the atmospheric environment. In particular, long-read amplicon sequencing, viability PCR, and meta-transcriptomics are promising techniques for discriminating and detecting pathogenic microorganisms that may be active and infectious in bioaerosols and, therefore, pose a threat to human health.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s41745-023-00380-x.

摘要

未标注

生物气溶胶在大气环境中起着至关重要的作用,并会影响人类健康。除了少数例外情况(如农场或雨林环境),来自广泛环境的生物气溶胶样本通常生物量较低,包括来自室内环境(如住宅、办公室或医院)、室外环境(如城市或农村空气)的生物气溶胶。一些特殊环境(如洁净室、地球高层大气或国际空间站)具有超低生物量。本综述讨论了生物气溶胶的主要来源和影响因素、空气采样技术的最新进展以及用于表征低生物量生物气溶胶群落的新一代测序(NGS)方法,以及在对超低生物量样本进行NGS分析时不同空气采样器引入偏差方面的挑战。需要与NGS分析兼容的基于大容量过滤器或液体的空气采样器来提高微生物的生物气溶胶检测限。需要全面了解使用NGS方法进行生物气溶胶采样的性能和结果以及用于NGS分析的气溶胶样本处理的稳健方案。NGS技术和生物信息学工具的进展将有助于精确高通量鉴定生物气溶胶群落的分类学概况,并确定其在大气环境中的功能和生态属性。特别是,长读长扩增子测序、活力PCR和宏转录组学是有前景的技术,可用于区分和检测可能在生物气溶胶中具有活性和传染性、因此对人类健康构成威胁的致病微生物。

补充信息

在线版本包含可在10.1007/s41745-023-00380-x获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eb8/10176311/50458e7746b7/41745_2023_380_Fig1_HTML.jpg

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