Institute for Environment and Energy, Pusan National University, Busan, 46241, Republic of Korea.
Department of Civil and Environmental Engineering, Pusan National University, Busan, 46241, Republic of Korea.
Environ Pollut. 2023 Apr 15;323:121211. doi: 10.1016/j.envpol.2023.121211. Epub 2023 Feb 3.
Due to its widespread and intensive use as a corrosion inhibitor, benzotriazole is ubiquitously detected from a few parts per billion to several hundred parts per million in aquatic environments. The long-term toxicity of benzotriazole is unclear despite its low acute toxicity. Therefore, we investigated the transgenerational effects of benzotriazole at the genomic and individual levels using the freshwater zooplankton Daphnia magna. Maternal exposure to sublethal concentrations (15 and 30 mg/L) of benzotriazole exerted transgenerational effects on D. magna at the genomic and individual levels even in descendants that have never been exposed to benzotriazole. Significant alterations in the expression of Cyp, GST, Vtg1, and Hb and in neonate size were observed in the unexposed F3 generation, confirming the transgenerational effect of benzotriazole. Interestingly, detoxification related genes Cyp and GST were unaffected or downregulated in the exposed generation but upregulated in the following unexposed generations. Furthermore, continuous multigenerational exposure to an environmental concentration (4.3 μg/L) of benzotriazole also upregulated detoxification genes in decent generations but exerted no individual-level effects in subsequent generations.
由于苯并三唑作为一种广泛使用的腐蚀抑制剂,其在水生环境中的浓度从十亿分之几到百万分之几不等。尽管苯并三唑的急性毒性较低,但长期毒性仍不清楚。因此,我们使用淡水浮游动物大型溞(Daphnia magna)在基因组和个体水平上研究了苯并三唑的跨代效应。母体暴露于低致死浓度(15 和 30mg/L)的苯并三唑在基因组和个体水平上对大型溞产生了跨代效应,即使在从未接触过苯并三唑的后代中也是如此。在未暴露的 F3 代中观察到 Cyp、GST、Vtg1 和 Hb 的表达以及幼体大小的显著改变,证实了苯并三唑的跨代效应。有趣的是,在暴露的一代中,解毒相关基因 Cyp 和 GST 不受影响或下调,但在随后的未暴露的几代中上调。此外,连续多代暴露于环境浓度(4.3μg/L)的苯并三唑也在上代中上调了解毒基因,但对随后的几代没有个体水平的影响。