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媒介传播遵循入侵生态学原理。

Fomite Transmission Follows Invasion Ecology Principles.

机构信息

Department of Mechanical Engineering, University of Hong Kong, Hong Kong SAR, China.

School of Energy and Environment, City University of Hong Konggrid.35030.35, Hong Kong SAR, China.

出版信息

mSystems. 2022 Jun 28;7(3):e0021122. doi: 10.1128/msystems.00211-22. Epub 2022 May 3.

Abstract

The invasion ecology principles illustrated in many ecosystems have not yet been explored in the context of fomite transmission. We hypothesized that invaders in fomite transmission are trackable, are neutrally distributed between hands and environmental surfaces, and exhibit a proximity effect. To test this hypothesis, a surrogate invader, Lactobacillus delbrueckii subsp. , was spread by a root carrier in an office housing more than 20 participants undertaking normal activities, and the microbiotas on skin and environmental surfaces were analyzed before and after invasion. First, we found that the invader was trackable. Its identity and emission source could be determined using microbial-interaction networks, and the root carrier could be identified using a rank analysis. Without prior information, L. bulgaricus could be identified as the invader emitted from a source that exclusively contained the invader, and the probable root carrier could be located. In addition to the single-taxon invasion by L. bulgaricus, multiple-taxon invasion was observed, as genera from sputum/saliva exhibited co-occurrence relationships on skin and environmental surfaces. Second, the invader had a below-neutral distribution in a neutral community model, suggesting that hands accrued heavier invader contamination than environmental surfaces. Third, a proximity effect was observed on a surface touch network. Invader contamination on surfaces decreased with increasing geodesic distance from the hands of the carrier, indicating that the carrier's touching behaviors were the main driver of fomite transmission. Taken together, these results demonstrate the invasion ecology principles in fomite transmission and provide a general basis for the management of ecological fomite transmission. Fomite transmission contributes to the spread of many infectious diseases. However, pathogens in fomite transmission typically are either investigated individually without considering the context of native microbiotas or investigated in a nondiscriminatory way from the dispersal of microbiotas. In this study, we adopted an invasion ecology framework in which we considered pathogens as invaders, the surface environment as an ecosystem, and human behaviors as the driver of microbial dispersal. With this approach, we assessed the ability of quantitative ecological theories to track and forecast pathogen movements in fomite transmission. By uncovering the relationships between the invader and native microbiotas and between human behaviors and invader/microbiota dispersal, we demonstrated that fomite transmission follows idiosyncratic invasion ecology principles. Our findings suggest that attempts to manage fomite transmission for public health purposes should focus on the microbial communities and anthropogenic factors involved, in addition to the pathogens.

摘要

在媒介传播的背景下,许多生态系统中所阐明的入侵生态学原则尚未得到探索。我们假设媒介传播中的入侵者是可追踪的,在手部和环境表面之间呈中性分布,并表现出接近效应。为了验证这一假设,我们使用替代入侵者,即德氏乳杆菌亚种,通过根载体在一个容纳 20 多名参与者的办公室中进行传播,这些参与者从事正常活动,然后分析入侵前后皮肤和环境表面的微生物群。首先,我们发现入侵者是可追踪的。可以使用微生物相互作用网络确定其身份和排放源,并且可以使用秩分析识别根载体。在没有先验信息的情况下,可以将乳杆菌识别为从仅包含该入侵者的源中发出的入侵者,并且可以定位可能的根载体。除了乳杆菌的单物种种群入侵外,还观察到多物种种群入侵,因为痰液/唾液中的属在皮肤和环境表面上表现出共存关系。其次,在中性群落模型中,入侵者呈中性以下分布,这表明手部比环境表面更容易沾染入侵者。第三,在表面触摸网络上观察到接近效应。随着载体手与表面之间的测地距离增加,表面上的入侵者污染减少,这表明载体的触摸行为是媒介传播的主要驱动因素。总之,这些结果证明了媒介传播中的入侵生态学原则,并为生态媒介传播的管理提供了一般依据。媒介传播有助于许多传染病的传播。然而,媒介传播中的病原体通常要么单独进行研究,而不考虑原生微生物群的背景,要么不加区分地从微生物群的传播角度进行研究。在这项研究中,我们采用了入侵生态学框架,将病原体视为入侵者,表面环境视为生态系统,人类行为视为微生物传播的驱动因素。通过这种方法,我们评估了定量生态学理论在跟踪和预测媒介传播中病原体运动方面的能力。通过揭示入侵者与原生微生物群之间以及人类行为与入侵者/微生物群传播之间的关系,我们证明了媒介传播遵循特殊的入侵生态学原则。我们的研究结果表明,为了公共卫生目的而试图管理媒介传播,除了病原体之外,还应关注所涉及的微生物群落和人为因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4393/9238404/cdfe9d7d2d25/msystems.00211-22-f001.jpg

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