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建筑环境微生物群的跨学科视角。

An interdisciplinary perspective of the built-environment microbiome.

作者信息

McAlister John S, Blum Michael J, Bromberg Yana, Fefferman Nina H, He Qiang, Lofgren Eric, Miller Debra L, Schreiner Courtney, Candan K Selcuk, Szabo-Rogers Heather, Reed J Michael

机构信息

Department of Mathematics, University of Tennessee, Knoxville, TN 37996, United States.

National Institute for Mathematical and Biological Synthesis, University of Tennessee, Knoxville, TN 37996, United States.

出版信息

FEMS Microbiol Ecol. 2025 Jan 7;101(1). doi: 10.1093/femsec/fiae166.

Abstract

The built environment provides an excellent setting for interdisciplinary research on the dynamics of microbial communities. The system is simplified compared to many natural settings, and to some extent the entire environment can be manipulated, from architectural design to materials use, air flow, human traffic, and capacity to disrupt microbial communities through cleaning. Here, we provide an overview of the ecology of the microbiome in the built environment. We address niche space and refugia, population, and community (metagenomic) dynamics, spatial ecology within a building, including the major microbial transmission mechanisms, as well as evolution. We also address landscape ecology, connecting microbiomes between physically separated buildings. At each stage, we pay particular attention to the actual and potential interface between disciplines, such as ecology, epidemiology, materials science, and human social behavior. We end by identifying some opportunities for future interdisciplinary research on the microbiome of the built environment.

摘要

建筑环境为微生物群落动态的跨学科研究提供了绝佳的环境。与许多自然环境相比,该系统较为简化,并且在一定程度上,从建筑设计到材料使用、气流、人员流动以及通过清洁破坏微生物群落的能力等整个环境都可以进行操控。在此,我们概述了建筑环境中微生物组的生态学。我们探讨了生态位空间和避难所、种群以及群落(宏基因组)动态、建筑物内的空间生态学,包括主要的微生物传播机制以及进化。我们还探讨了景观生态学,即连接物理上分离的建筑物之间的微生物组。在每个阶段,我们都特别关注各学科之间实际的和潜在的交叉点,例如生态学、流行病学、材料科学和人类社会行为。最后,我们确定了一些关于建筑环境微生物组未来跨学科研究的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b96f/11715626/14bf8b048856/fiae166fig1.jpg

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