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Global Survey of Antibiotic Resistance Genes in Air

抗生素耐药性 抗生素 基因 微粒 16S核糖体RNA 空气质量指数 公共卫生 微生物学 生物 遗传学 生态学 医学 护理部
作者
Jing Li,Junji Cao,Yong‐Guan Zhu,Qing‐Lin Chen,Fangxia Shen,Yan Wu,Siyu Xu,Hanqing Fan,Guillaume Da,Ru‐Jin Huang,Jing Wang,Alma Lorelei de Jesus,Lidia Morawska,Chak K. Chan,Jordan Peccia,Maosheng Yao
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:52 (19): 10975-10984 被引量:287
标识
DOI:10.1021/acs.est.8b02204
摘要

Despite its emerging significant public health concern, the presence of antibiotic resistance genes (ARGs) in urban air has not received significant attention. Here, we profiled relative abundances (as a fraction, normalized by 16S rRNA gene) of 30 ARG subtypes resistant to seven common classes of antibiotics, which are quinolones, β-lactams, macrolides, tetracyclines, sulfonamides, aminoglycosides, and vancomycins, in ambient total particulate matter (PM) using a novel protocol across 19 world cities. In addition, their longitudinal changes in PM2.5 samples in Xi'an, China as an example were also studied. Geographically, the ARGs were detected to vary by nearly 100-fold in their abundances, for example, from 0.07 (Bandung, Indonesia) to 5.6 (San Francisco, USA). The β-lactam resistance gene blaTEM was found to be most abundant, seconded by quinolone resistance gene qepA; and their corresponding relative abundances have increased by 178% and 26%, respectively, from 2004 to 2014 in Xi'an. Independent of cities, gene network analysis indicates that airborne ARGs were differentially contributed by bacterial taxa. Results here reveal that urban air is being polluted by ARGs, and different cities are challenged with varying health risks associated with airborne ARG exposure. This work highlights the threat of urban airborne transmission of ARGs and the need of redefining our current air quality standards in terms with public health.
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