Exposure and health risks of livestock air resistomes

W Wei Sun J Jun Wang G Guangdong Wang (Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University) L Lan Jiang (Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University) W Wenlu Feng (Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University) S Shuangsuo Dang (Department of Infectious Diseases, Second Affiliated Hospital of Xi’an Jiaotong University) M Mei Li S Shuo Jiao (Department of Environmental Science, College of Natural Resources and Environment, Northwest A&F University) G Gehong Wei (Department of Microbiology, College of Life Sciences, Northwest A&F University) J Jie Gu (State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering) J James M. Tiedje (Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University) X Xun Qian (Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University)

Abstract

Most of the global antibiotic consumption is by the livestock industry, making livestock farms a hotspot of antibiotic resistance genes (ARGs). Farm air poses direct ARG exposure to workers, but the health risks of air resistomes remain unclear. We evaluated the human exposure and health risks of air resistomes in pig and chicken farms and compared air resistomes in Chinese farms to those in European farms given their long-term restrictions on use of antibiotics in livestock. We found that livestock air was highly enriched in ARGs, with each cell harboring seven times more ARGs than urban air. The daily ARG inhalation of farm workers was equivalent to several years of ARG inhalation by urban residents. ARGs encoding resistance to last-resort antibiotics such as mcr-1 and tetX were detected in farm air, and tetX variants were prevalent in both Chinese and European farms. ARGs in livestock air were highly associated with mobile genetic elements, and conjugation experiments confirmed their cross-phyla transferability. The projected resistome risk of farm air was significantly higher than well-recognized ARG hotspots like air from hospitals, sewage treatment plants, and from animal manures. The diversity, abundance, and risk score of air resistomes in Chinese farms were significantly higher than those in European farms, suggesting that long-term restriction of antibiotic use mitigates antibiotic resistance in the livestock environment. Our results underscore the high exposure of farm workers to ARGs via farm air and highlight its role in ARG dissemination, supporting the importance of antibiotic stewardship practices in combating antibiotic resistance.

Article Details

Volume / Issue Vol. 122, Issue 18
Published May 06, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (12)

W

Wei Sun

J

Jun Wang

G

Guangdong Wang

Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University

L

Lan Jiang

Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University

W

Wenlu Feng

Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University

S

Shuangsuo Dang

Department of Infectious Diseases, Second Affiliated Hospital of Xi’an Jiaotong University

M

Mei Li

S

Shuo Jiao

Department of Environmental Science, College of Natural Resources and Environment, Northwest A&F University

G

Gehong Wei

Department of Microbiology, College of Life Sciences, Northwest A&F University

J

Jie Gu

State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering

J

James M. Tiedje

Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University

X

Xun Qian

Interdisciplinary Research Center for Soil Microbial Ecology and Land Sustainable Productivity in Dry Areas, Northwest A&F University