Li Yinsheng, Tang Hao, Hu Yingxiu, Wang Xiuhong, Ai Xiaojie, Tang Li, Matthew Cory, Cavanagh Jo, Qiu Jiangping
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
J Hazard Mater. 2016 May 5;308:312-20. doi: 10.1016/j.jhazmat.2016.01.057. Epub 2016 Jan 25.
Individual and combined effects of enrofloxacin (EF) and cadmium (Cd) on the earthworm Eisenia fetida at environmentally relevant concentrations were investigated. EF is a veterinary antibiotic; Cd is an impurity in phosphatic fertiliser. For both, residues may accumulate in farm soils. In laboratory tests, over 98% of spiked EF was adsorbed by farm soils, with a half-life >8 weeks. However, earthworms absorbed less than 20% of spiked EF. Earthworms in soil with EF concentration 10 mg kg(-1) soil experienced transient oxidative stress and exhibited reduced burrowing activity and respiration after an 8-week exposure; EF at 0.1 and 1.0 mg kg(-1) soil did not elicit toxicity symptoms. When both were added, Cd did not affect EF uptake, but each increment of spiked EF increased Cd bioaccumulation and associated oxidative stress of earthworms, and also caused decreased burrow length and CO2 production. However, metallothionein induction was not affected. The enhanced toxicity of Cd to earthworms in the presence of EF at low environmental concentrations may have implications for the health and reproductive success of earthworm populations and highlights the importance of understanding effects of antibiotic contamination of farm soils, and of awareness of environmental effects from interaction between multiple contaminants.
研究了恩诺沙星(EF)和镉(Cd)在环境相关浓度下对赤子爱胜蚓的单独和联合影响。EF是一种兽用抗生素;Cd是磷肥中的一种杂质。两者的残留物都可能在农田土壤中积累。在实验室测试中,超过98%的添加EF被农田土壤吸附,半衰期>8周。然而,蚯蚓吸收的添加EF不到20%。在EF浓度为10 mg kg(-1)土壤中的蚯蚓在暴露8周后经历了短暂的氧化应激,并表现出挖掘活动和呼吸减少;土壤中EF浓度为0.1和1.0 mg kg(-1)时未引发毒性症状。当两者都添加时,Cd不影响EF的吸收,但添加EF的每一次增加都会增加蚯蚓的Cd生物积累和相关的氧化应激,还会导致洞穴长度和二氧化碳产量减少。然而,金属硫蛋白的诱导不受影响。在低环境浓度的EF存在下,Cd对蚯蚓毒性的增强可能对蚯蚓种群的健康和繁殖成功有影响,并突出了了解农田土壤抗生素污染影响以及认识多种污染物之间相互作用的环境影响的重要性。