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Influence of housing characteristics on bacterial and fungal communities in homes of asthmatic children

机译:住房特征对哮喘儿童家庭细菌和真菌群落的影响

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摘要

Variations in home characteristics, such as moisture and occupancy, affect indoor microbial ecology as well as human exposure to microorganisms. Our objective was to determine how indoor bacterial and fungal community structure and diversity are associated with the broader home environment and its occupants. Next-generation DNA sequencing was used to describe fungal and bacterial communities in house dust sampled from 198 homes of asthmatic children in southern New England. Housing characteristics included number of people/children, level of urbanization, single/multifamily home, reported mold, reported water leaks, air conditioning (AC) use, and presence of pets. Both fungal and bacterial community structure were non-random and demonstrated species segregation (C-score, p<0.00001). Increased microbial richness was associated with the presence of pets, water leaks, longer AC use, suburban (vs. urban) homes, and dust composition measures (p<0.05). The most significant differences in community composition were observed for AC use and occupancy (people, children, and pets) characteristics. Occupant density measures were associated with beneficial bacterial taxa, including Lactobacillus johnsonii as measured by qPCR. A more complete knowledge of indoor microbial communities is useful for linking housing characteristics to human health outcomes. Microbial assemblies in house dust result, in part, from the building’s physical and occupant characteristics.
机译:诸如湿度和占用率之类的家庭特征的变化会影响室内微生物生态系统以及人类对微生物的接触。我们的目标是确定室内细菌和真菌的群落结构和多样性如何与更广泛的家庭环境及其居住者相关联。下一代DNA测序用于描述从新英格兰南部198个哮喘儿童家中采集的屋尘中的真菌和细菌群落。住房特征包括人数/儿童人数,城市化水平,单人/多户家庭住所,报告的霉菌,报告的漏水,空调(AC)使用和宠物的存在。真菌和细菌群落结构都是非随机的,并显示出物种隔离(C评分,p <0.00001)。微生物丰富度的增加与宠物的存在,漏水,更长的空调使用时间,郊区(相对于城市)的房屋以及灰尘成分的测量有关(p <0.05)。在交流使用和居住(人,儿童和宠物)特征方面,观察到社区组成的最显着差异。乘员密度测量与有益细菌分类群相关联,包括通过qPCR测量的约氏乳杆菌。对室内微生物群落的更全面的了解对于将住房特征与人类健康结果联系起来很有用。房屋灰尘中的微生物集合体部分是由建筑物的物理和居住特征造成的。

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