抗生素
抗生素耐药性
生态学
生物
生态系统
抗性(生态学)
四环素
环丙沙星
水生生态系统
非生物成分
农业
雨季
污水
初级生产者
地理
环境科学
微生物生态学
热带
淡水生态系统
废水
旱季
抗药性
污水处理
爆发
污染
金霉素
栖息地
牲畜
作者
Xiaodi Zhang,Qi Xie,Shisheng Li,Shengkai Cao,Yao Liu,Wei Wang,Jun-Fu Zhao,Guangshui Na
标识
DOI:10.1016/j.jece.2025.120156
摘要
Antibiotics and antibiotic resistance genes (ARGs) represent a critical threat to global public and environmental health. While their occurrence is widely reported, the spatiotemporal dynamics and propagation mechanisms within tropical river-bay systems, remain inadequately understood. This study presents a comprehensive investigation of 46 antibiotics and 51 ARGs in the river-bay system of Sanya, a representative tropical tourist city in China, across distinct wet and dry seasons. The predominant antibiotics were identified as quinolones and tetracyclines, with concentrations ranging from not detected (ND) to 50.98 ng/L and from ND to 122.22 ng/L, respectively. Absolute ARGs abundances ranged from ND to 4.72 × 10 7 copies/L, with aminoglycoside, MLSB, and tetracycline resistance genes being the most abundant ARGs. Their distribution exhibited significant spatiotemporal heterogeneity, primarily driven by seasonal wastewater discharges from tourism, agricultural and livestock runoff, and varying hydrological conditions. Ecological risk assessment indicated that antibiotic mixtures persistently posed a high risk to algae, with ciprofloxacin and chlortetracycline classified as priority pollutants. Co-occurrence network analysis further revealed more intricate and robust ARG-bacteria interactions during the dry season, suggesting that seasonal forces such as low flow and intensified human activities, promote the selection of multidrug-resistant bacteria. Our findings demonstrate that tropical coastal ecosystems are vulnerable to antibiotic and ARG pollution, which is governed by the interplay of anthropogenic influences and natural hydroclimatic factors, necessitating tailored monitoring and mitigation strategies. • Widespread antibiotics and ARGs were found in Sanya's river-bay system. • Antibiotic pollution was moderate-low, dominated by quinolones and tetracyclines. • Tourism, agriculture, and hydrology influenced antibiotic and ARG distribution. • Ciprofloxacin and chlortetracycline were identified as priority pollutants. • Dry-season conditions promoted ARG-bacteria co-occurrence and multidrug resistance.
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