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Metagenomic Analysis of Regularly Microwave-Treated and Untreated Domestic Kitchen Sponges

机译:定期微波处理和未经处理的家用厨房海绵的元基因组学分析

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摘要

Kitchen sponges massively absorb and spread microorganisms, leading to contamination of kitchen appliances, surfaces, and food. Microwaving as an effective and widespread technique can rapidly reduce the microbial load of kitchen sponges. However, long-term effects of such treatments are largely unknown. Notably, it has been speculated that regularly applied domestic cleaning and disinfection may select for microbial communities with a higher pathogenic potential and/or malodorous properties. In this study, we distributed newly purchased polyurethane kitchen sponges to 20 participants, with the instruction to use them under normal household conditions for four weeks. Ten of the participants sanitized their sponges regularly by a standardized microwaving protocol, while the remaining ten sponges remained untreated. Metagenomic sequence data evaluation indicated that, in addition to bacteria, viruses, eukaryotes, and archaea were also part of the kitchen sponge microbiome. Comparisons of sanitized and untreated kitchen sponges indicated a trend towards a reduced structural microbial diversity while functional diversity increased. Microwave sanitization appeared to alter composition and metabolic properties of the microbial communities. Follow-up studies will have to show whether these changes are more positive or negative in terms of domestic hygiene, human health, and well-being.
机译:厨房海绵大量吸收和传播微生物,导致厨房用具,表面和食物受到污染。微波作为一种有效且广泛使用的技术可以迅速减少厨房海绵的微生物负荷。然而,这种治疗的长期效果在很大程度上尚不清楚。值得注意的是,已经推测,定期进行的家庭清洁和消毒可以选择具有较高致病潜力和/或恶臭特性的微生物群落。在这项研究中,我们向20名参与者分发了新购买的聚氨酯厨房海绵,并指示他们在正常的家庭条件下使用四个星期。十名参与者通过标准化的微波协议定期清洁海绵,而其余十只海绵则未经治疗。元基因组序列数据评估表明,除细菌外,病毒,真核生物和古细菌也是厨房海绵微生物组的一部分。对经过消毒和未经处理的厨房用海绵的比较表明,结构微生物多样性有所减少,而功能多样性却有所增加。微波消毒似乎会改变微生物群落的组成和代谢特性。后续研究将必须显示这些变化在家庭卫生,人类健康和福祉方面是正面还是负面的。

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