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Published on: March 5, 2014
Dynamics of Microbial Community and Potential Microbial Pollutants in Shopping Malls
Xin-Li An1, Jian-Xin Xu1, Mei-Rong Xu1,2
1Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, China.
Abstract:
Shopping malls offer various niches for microbial populations, potentially serving as sources and reservoirs for the spread of microorganisms of public health concern. However, knowledge about the microbiome and the distribution of human pathogens in malls is largely unknown. Here, we examine the microbial community dynamics and genotypes of potential pathogens from floor and escalator surfaces in shopping malls and adjacent road dusts and greenbelt soils. The distribution pattern of microbial communities is driven primarily by habitats and seasons. A significant enrichment of human-associated microbiota in the indoor environment indicates that human interactions with surfaces might be another strong driver for mall microbiomes. Neutral community models suggest that the microbial community assembly is strongly driven by stochastic processes. Distinct performances of microbial taxonomic signatures for environmental classifications indicate the consistent differences of microbial communities of different seasons/habitats and the strong anthropogenic effect on homogenizing microbial communities of shopping malls. Indoor environments harbored higher concentrations of human pathogens than outdoor samples, also carrying a high proportion of antimicrobial resistance-associated multidrug efflux genes and virulence genes. These findings enhanced the understanding of the microbiome in the built environment and the interactions between humans and the built environment, providing a basis for tracking biothreats and communicable diseases and developing sophisticated early warning systems. IMPORTANCE Shopping malls are distinct microbial environments which can facilitate a constant transmission of microorganisms of public health concern between humans and the built environment or between human and human. Despite extensive investigation of the natural environmental microbiome, no comprehensive profile of microbial ecology has been reported in malls. Characterizing microbial distribution, potential pathogens, and antimicrobial resistance will enhance our understanding of how these microbial communities are formed, maintained, and transferred and help establish a baseline for biosurveillance of potential public health threats in malls.
Insights
Shopping malls harbor significant human-associated microbes and pathogens, with higher concentrations indoors. This research provides a baseline for biosurveillance of public health threats in built environments.
Area of Science:
- Microbiology
- Environmental Science
- Public Health
Background:
- Shopping malls are potential reservoirs for microorganisms of public health concern.
- Limited knowledge exists regarding mall microbiomes and pathogen distribution.
Purpose of the Study:
- To investigate microbial community dynamics and pathogen genotypes in shopping malls.
- To understand the drivers of mall microbiomes and their public health implications.
Main Methods:
- Analysis of microbial communities from mall floors, escalators, road dust, and greenbelt soils.
- Application of neutral community models to assess microbial assembly processes.
- Genotyping of potential pathogens and antimicrobial resistance genes.
Main Results:
- Microbial distribution is primarily influenced by habitat and season.
- Mall environments show enrichment of human-associated microbiota and higher pathogen concentrations.
- Increased prevalence of antimicrobial resistance and virulence genes in indoor samples.
Conclusions:
- Human-environment interactions significantly shape mall microbiomes.
- Shopping malls act as hubs for transmitting public health-relevant microorganisms.
- Findings support biosurveillance and early warning systems for communicable diseases.
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