Institute for Energy, Environment and Sustainable Communities , University of Regina , Regina , Canada S4S 0A2.
Department of Building, Civil and Environmental Engineering , Concordia University , Montreal , Canada H3G 1M8.
Environ Sci Technol. 2019 Feb 19;53(4):2189-2198. doi: 10.1021/acs.est.9b00259. Epub 2019 Feb 6.
This study explored the long-term impacts of a pulse disturbance of triclosan on five nontarget green algae in Lake Erie. Comprehensive analyses were performed using multiple physiological end points at community and subcellular scales. The toxic mechanism of triclosan in a wide range of concentrations was analyzed. The diverse sensitivity of algae species and complex interrelationships among multiple end points were revealed. The results showed the taxonomic groups of algae were the key issue for sensitivity difference. High doses of triclosan caused irreversible damage on algae, and environmentally relevant doses initiated either inhibition or stimulation. Smaller cells had higher sensitivity to triclosan, while larger cells had a wider size variation after exposure. Colonial cells were less sensitive than unicells. For chlorophyll, there were better dose-response relationships in Chlorococcum sp., Chlamydomonas reinhardtii CPCC 12 and 243 than Asterococcus superbus and Eremosphaera viridis. For chlorophyll fluorescence, F/ F was the most sensitive parameter, and q was more sensitive than q. Triclosan showed long-term effects on biochemical components, such as lipids, proteins, and nucleic acids. The findings will be helpful for a systematic and complete assessment of triclosan toxicity in natural waters and the development of appropriate strategies for its risk management.
本研究探讨了三氯生脉冲干扰对伊利湖五种非靶标绿藻的长期影响。在群落和亚细胞尺度上,使用多个生理终点进行了综合分析。分析了三氯生在广泛浓度范围内的毒性机制。揭示了藻类物种的不同敏感性和多个终点之间的复杂相互关系。结果表明,藻类的分类群是敏感性差异的关键问题。高剂量的三氯生对藻类造成不可逆转的损害,而环境相关剂量则引发抑制或刺激。较小的细胞对三氯生的敏感性更高,而暴露后较大的细胞尺寸变化范围更大。群体细胞比单细胞更不敏感。对于叶绿素,Chlorococcum sp.、Chlamydomonas reinhardtii CPCC 12 和 243 中的剂量-反应关系优于 Asterococcus superbus 和 Eremosphaera viridis。对于叶绿素荧光,F/F 是最敏感的参数,q 比 q 更敏感。三氯生对脂质、蛋白质和核酸等生化成分表现出长期影响。这些发现将有助于对自然水体中三氯生毒性进行系统和全面的评估,并为其风险管理制定适当的策略。