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推进空气传播细菌的转录组分析。

Advancing transcriptomic profiling of airborne bacteria.

作者信息

Kraus Emily Antoinette, Prithiviraj Bharath, Hernandez Mark

机构信息

Environmental Engineering, University of Colorado Boulder, Boulder, Colorado, USA.

Microbiome Science Platforms, Reckitt Health US, Montvale, New Jersey, USA.

出版信息

Appl Environ Microbiol. 2025 May 21;91(5):e0014825. doi: 10.1128/aem.00148-25. Epub 2025 Apr 28.

Abstract

Aerobiology research focusing on bioaerosol particle dynamics has catalogued the identity, distribution, and abundance of airborne microbes in a broad variety of indoor environments and, more recently, indoor disinfection methods for medically relevant microbes. Given their importance in environmental health and our constant exposure to airborne microbes in our daily lives, surprisingly little is known about the activity of live bioaerosols and their metabolic responses to aerosolization and suspension stress. In this context, microbial messenger RNA (mRNA) is a powerful information source of near-real-time organismal responses that cannot be attained through genomic, proteomic, or metabolomic studies. This review discusses current knowledge from transcriptomic studies describing airborne bacterial cellular activity in response to a myriad of environmental stresses imparted rapidly upon aerosolization and continued suspension as a microscopic bioaerosol. In the context of transcriptome profiling, potential artifacts associated with aerosolization/collection of bioaerosols are discussed from the perspective of preserving mRNA and maintaining its fidelity as it exists in airborne microbes. Recommendations for advancing live bioaerosol metabolic profiling through gene expression studies are presented to mitigate inherent artifacts and challenges with modern bioaerosol experiments. These recommendations include the use of larger experimental chambers, temperature control during aerosolization processes, and liquid capture bioaerosol sampling into a nucleic acid preservative to improve the fidelity of collected RNA and better capture the transcriptional activity of airborne microorganisms. Eventually, improvements in profiling bioaerosol activity can contribute toward answering fundamental questions on the aerobiome such as: is the atmosphere a temporary highway or a habitat for microorganisms?

摘要

聚焦于生物气溶胶颗粒动力学的空气生物学研究,已对多种室内环境中空气传播微生物的种类、分布和丰度进行了编目,最近还涉及了针对医学相关微生物的室内消毒方法。鉴于其在环境卫生中的重要性以及我们在日常生活中持续暴露于空气传播微生物,令人惊讶的是,对于活生物气溶胶的活性及其对雾化和悬浮应激的代谢反应,我们所知甚少。在此背景下,微生物信使核糖核酸(mRNA)是一种强大的信息源,可提供近乎实时的生物体反应,而这是通过基因组、蛋白质组或代谢组学研究无法获得的。本综述讨论了转录组学研究的现有知识,这些研究描述了空气传播细菌细胞在雾化后迅速受到的多种环境应激以及作为微观生物气溶胶持续悬浮时的反应。在转录组分析的背景下,从保存mRNA并维持其在空气传播微生物中存在时的保真度的角度,讨论了与生物气溶胶雾化/收集相关的潜在假象。提出了通过基因表达研究推进活生物气溶胶代谢分析的建议,以减轻现代生物气溶胶实验中固有的假象和挑战。这些建议包括使用更大的实验腔室、在雾化过程中进行温度控制,以及将液体捕获生物气溶胶采样到核酸防腐剂中,以提高收集到的RNA的保真度,并更好地捕捉空气传播微生物的转录活性。最终,生物气溶胶活性分析的改进有助于回答有关空气微生物群落的基本问题,例如:大气是微生物的临时通道还是栖息地?

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