Respiratory Health Division, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, United States.
Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, United States.
Environ Sci Technol. 2022 Aug 16;56(16):11493-11503. doi: 10.1021/acs.est.2c01703. Epub 2022 Jul 28.
The assemblage of fungi including unicellular yeasts in schools is understudied. We conducted an environmental study to characterize fungal communities in classroom floor dust. We collected 500 samples from 50 elementary schools in Philadelphia, PA, and evaluated room dampness/mold conditions. Genomic DNA from dust was extracted for internal transcribed spacer 1 Illumina MiSeq sequencing to identify operational taxonomic units (OTUs) organized from DNA sequences. Differential abundance analyses were performed to examine significant differences in abundance among groups. We identified 724 genera from 1490 OTUs. The genus was not diverse but the most abundant (relative abundance = 18.9%). Fungi were less diverse but most dissimilar in composition in the most water-damaged classrooms compared to the least water-damaged, indicating differential effects of individual classroom water-damage on fungal compositions. We identified 62 yeast genera, representing 19.6% of DNA sequences. was the most abundant (6.1%), followed by , , , and . The average relative abundance of yeasts tended to increase with increasing dampness and mold score and was significantly (-value = 0.048) higher in the most water-damaged classrooms (22.4%) than the least water-damaged classrooms (18.2%). Our study suggests the need for further research on the potential health effects associated with exposures to yeasts in schools.
真菌(包括单细胞酵母)的聚集在学校中研究较少。我们进行了一项环境研究,以描述教室地板灰尘中的真菌群落。我们从宾夕法尼亚州费城的 50 所小学收集了 500 个样本,并评估了房间的潮湿/霉菌状况。从灰尘中提取基因组 DNA 进行内部转录间隔区 1 Illumina MiSeq 测序,以根据 DNA 序列识别分类操作单元 (OTU)。进行差异丰度分析以检查组间丰度的显着差异。我们从 1490 个 OTU 中鉴定出 724 个属。属的多样性不高,但最丰富(相对丰度=18.9%)。与潮湿程度最低的教室相比,水损坏最严重的教室中的真菌多样性较低但组成差异最大,表明个别教室水损坏对真菌组成的影响不同。我们鉴定出 62 个酵母属,占 DNA 序列的 19.6%。属的丰度最高(6.1%),其次是属、属、属和属。随着潮湿和霉菌评分的增加,酵母的平均相对丰度趋于增加,并且在水损坏最严重的教室(22.4%)中显着高于潮湿程度最低的教室(18.2%)(-值=0.048)。我们的研究表明需要进一步研究与学校中暴露于酵母相关的潜在健康影响。