Department of Biology and Ecology, University of Novi Sad, Faculty of Sciences, Trg Dositeja Obradovića 3, Novi Sad, 21000, Republic of Serbia.
Institute for Biological Research "Siniša Stanković", University of Belgrade, Bulevar despota Stefana 142, Belgrade, 11000, Republic of Serbia.
Environ Sci Pollut Res Int. 2019 Mar;26(7):6890-6897. doi: 10.1007/s11356-018-3950-6. Epub 2019 Jan 11.
In the present study, the influence of cadmium, copper, and lead on two enzymes often used as biomarkers in toxicological analysis was investigated. Bees were fed with 1 M sucrose solution containing 10-fold serial dilutions of CuCl (1000 mg L, 100 mg L, and 10 mg L), CdCl (0.1 mg L, 0.01 mg L, and 0.001 mg L), or PbCl (10 mg L, 1 mg L, and 0.1 mg L) during 48 h. Our results showed that the total glutathione S-transferase activity was not changed under the influence of cadmium and lead, and it was decreased with the highest concentration of copper. The level of gene expression of the three analyzed classes of glutathione S-transferase was significantly increased with increasing concentrations of copper and cadmium. Lead did not cause significant changes in glutathione S-transferase activity and gene expression, while it showed biphasic effect on acetylcholinesterase activity: lower concentration of lead, 0.1 mg L inhibited and higher dose, 10 mg L induced acetylcholinesterase activity in honey bees. Furthermore, our results showed a significant decrease of the acetylcholinesterase activity in honey bees treated with 0.001 and 0.01 mg L CdCl. Our results indicate the influence of cadmium, copper, and lead on GST and AChE in the honey bees. These results form the basis for future research on the impact of metallic trace element pollution on honey bees.
在本研究中,研究了镉、铜和铅对两种常用于毒理学分析的生物标志物酶的影响。蜜蜂在含有 10 倍系列稀释 CuCl(1000mg/L、100mg/L 和 10mg/L)、CdCl(0.1mg/L、0.01mg/L 和 0.001mg/L)或 PbCl(10mg/L、1mg/L 和 0.1mg/L)的 1M 蔗糖溶液中喂养 48 小时。我们的结果表明,在镉和铅的影响下,总谷胱甘肽 S-转移酶活性没有变化,而在铜的最高浓度下,其活性降低。随着铜和镉浓度的增加,三种分析类别的谷胱甘肽 S-转移酶的基因表达水平显著增加。铅对谷胱甘肽 S-转移酶活性和基因表达没有引起显著变化,而对乙酰胆碱酯酶活性表现出双相效应:较低浓度的铅(0.1mg/L)抑制,较高浓度的铅(10mg/L)诱导蜜蜂乙酰胆碱酯酶活性。此外,我们的结果表明,蜜蜂经 0.001 和 0.01mg/L CdCl 处理后,乙酰胆碱酯酶活性显著下降。我们的结果表明了镉、铜和铅对蜜蜂 GST 和 AChE 的影响。这些结果为未来研究金属微量元素污染对蜜蜂的影响奠定了基础。