Exploring bacterial diversity and antimicrobial resistance gene on a southern Brazilian swine farm

抵抗性 林可酰胺 基因组 抗生素耐药性 流动遗传元素 生物 生物技术 挑剔的有机体 多重耐药 肥料 微生物学 抗菌剂 兽医学 抗药性 细菌 抗生素 基因 遗传学 生态学 整合子 质粒 医学
作者
Mariana Costa Torres,Gabriela Merker Breyer,Manuel Adrian Riveros Escalona,Fabiana Quoos Mayer,Ana Paula Muterle Varela,Vasco Azevedo,Mateus Matiuzzi da Costa,Flávia Figueira Aburjaile,Márcio Dorn,Bertram Brenig,Marisa Ribeiro de Itapema Cardoso,Franciele Maboni Siqueira
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:352: 124146-124146 被引量:3
标识
DOI:10.1016/j.envpol.2024.124146
摘要

The bacterial composition of and the circulation of antimicrobial resistance genes (ARGs) in waste from Brazilian swine farms are still poorly understood. Considering that antimicrobial resistance (AMR) is one of the main threats to human, animal, and environmental health, the need to accurately assess the load of ARGs released into the environment is urgent. Therefore, this study aimed to characterize the microbiota in a swine farm in southern Brazil and the resistome in swine farm wastewater treated in a series of waste stabilization ponds (WSPs). Samples were collected from farm facilities and the surrounding environment, representing all levels of swine manure within the treatment system. Total metagenomic sequencing was performed on samples from WSPs, and 16S-rDNA sequencing was performed on all the collected samples. The results showed increased bacterial diversity in WSPs, characterized by the presence of Caldatribacteriota, Cloacimonadota, Desulfobacterota, Spirochaetota, Synergistota, and Verrucomicrobiota. Furthermore, resistance genes to tetracyclines, lincosamides, macrolides, rifamycin, phenicol, and genes conferring multidrug resistance were detected in WSPs samples. Interestingly, the most abundant ARG was linG, which confers resistance to the lincosamides. Notably, genes conferring macrolide (mphG and mefC) and rifamycin (rpoB_RIF) resistance appeared in greater numbers in the late WSPs. These drugs are among the high-priority antibiotic classes for human health. Moreover, certain mobile genetic elements (MGEs) were identified in the samples, notably tnpA, which was found in high abundance. These elements are of particular concern due to their potential to facilitate the dissemination of ARGs among bacteria. In summary, the results indicate that, in the studied farm, the swine manure treatment system could not eliminate ARGs and MGEs. Our results validate concerns about Brazil's swine production system. The misuse and overuse of antimicrobials during animal production must be avoided to mitigate AMR.

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