Deciphering risks of resistomes and pathogens in intensive laying hen production chain

抵抗性 生物 微生物群 粪便 基因组 食物链 抗生素耐药性 致病菌 微生物学 生物技术 抗生素 细菌 生态学 遗传学 基因 整合子
作者
Yixiao Zhu,Lina Pang,Shanming Lai,Xianjun Xie,Haoyu Zhang,Jing Yu,Jie Wu,Haoxuan Qi,Quan Zhou,Jingyi Feng,Anyun Zhang
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:869: 161790-161790 被引量:5
标识
DOI:10.1016/j.scitotenv.2023.161790
摘要

Antimicrobial resistance (AMR) and pathogens derived from food animals and their associated environments have emerged as challenging threats to humans from a health perspective, but our understanding of these risks and their key prevention and control points in the current intensive breeding industry remains poor. By creating an integral composition and risk profile of the resistome and microbiome through metagenomics in feces, flies, dust, sewage, and soil along the four-stage laying hen production chain, we found that the whole production chain is a hotspot for antimicrobial resistance genes (ARGs) with 374 known subtypes and pathogens, including 157 human pathogenic bacteria (HPB). Feces and flies were identified as major risk sources for these contaminations. Also, we confirmed a twin-risk of AMR and pathogenicity prevailing throughout the chain, but with different frequencies in each stage; thus, high-risk ARGs in the young chicken stage and highly prioritized HPB in the chick stage contributed 37.33 % to the total AMR risk and 36.36 % to the pathogenic risks, respectively, thus rendering the two stages to be the key prevention points. Moreover, the prevalence of 112 binned ARG supercarriers (for example, Klebsiella pneumoniae harboring 20 ARGs) was unraveled along the production chain, especially in feces, flies, and dust, and 87 potential hosts exhibited high pathogenic risk, high-risk AMR, or both, with 262 ARGs and 816 virulence factor genes. Overall, this study provides first-hand comprehensive data on high-risk ARGs and their pathogenic hosts in the intensive laying hen production chain, and thus is fundamentally important for developing new measures to help control the global AMR crisis induced through the animal-environment-human pathway.
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