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February 26, 2026Environmental Toxicology and Chemistry0 citations

Spatial Distribution and Drivers of Antibiotics and Resistance Genes in a Key Yellow River Tributary

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SMSusan MaWHWenhui HanYMYanxia Ma

Key Points

  • The aim is to understand how environmental factors and antibiotics drive the spread of antibiotic resistance genes in a river.
  • Conducted sampling from 6 sites in the Fenhe River Basin
  • Analyzed relationships between antibiotics, ARGs, and environmental factors
  • Measured concentrations of various antibiotics and resistance genes
  • Macrolide antibiotics were predominant, with azithromycin at 584 ng/L
  • ARG levels peaked midstream; sul2 and sul1 were the most abundant genes
  • Sand content positively correlated with 78% of ARGs, while flow velocity and pH negatively correlated with 72% of ARGs

Abstract

Abstract Antibiotics, various environmental factors, and suspended particulate matter (SPM) exert a significant influence on the occurrence and dissemination of antibiotic resistance genes (ARGs). However, the current research on the mechanisms underlying the environmental factor-driven ARG dissemination in sediment-laden rivers, particularly the role of SPM, remains incomplete. This study systematically examined the distribution and interaction mechanisms among environmental factors, antibiotics, and ARGs in the Fenhe River Basin, a vital river traversing urban and agricultural areas of Shanxi Province, China. The research aims to fill the knowledge gap regarding the driving role of environmental factors in ARG spread within sediment-laden river systems. Surface water samples were collected from 6 sites across the basin, and the characteristics and relationship between antibiotics, ARGs mobile genetic elements (MGEs), and environmental factors were analyzed. Results showed that macrolide antibiotics (MLs) were dominant, with azithromycin reaching the highest concentration (584 ng/L, 23% of total antibiotics). Spatially, antibiotic and ARG levels peaked in the midstream; sulfonamide resistance genes sul2 and sul1 were the most abundant ARGs. Tetracycline resistance genes correlated positively with tetracyclines (TCs), MLs and sulfonamide antibiotics, while Quinolone Efflux Pump A (QepA) showed negative correlations with quinolone antibiotics and TCs. Mobile genetic elements (e.g., intI-1LC) promoted ARG propagation. Thirteen environmental factors showed variable correlations with ARGs: sand content positively correlated with 78% of ARGs, while flow velocity and pH negatively correlated with 72% of ARGs. This study clarifies the combined effects of urban-agricultural activities on antibiotic-ARG in multi-sediment-laden rivers, offering insights for river ecological risk management.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/699fe44895ddcd3a253e87echttps://doi.org/10.1093/etojnl/vgag024
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