Toxicology Centre, University of Saskatchewan , 44 Campus Drive, Saskatoon, Saskatchewan, Canada S7N 5B3.
Environ Sci Technol. 2015 Feb 17;49(4):2469-76. doi: 10.1021/es5048792. Epub 2015 Jan 29.
In environmental studies, parasites are often seen as a product of enhanced host susceptibility due to exposure to one or several stressors, whereas potential consequences of infections on host responses are often overlooked. Therefore, the present study focused on effects of parasitism on bioaccumulation of selenium (Se) in rainbow trout (Oncorhynchus mykiss). Joint effects of biological (parasite) and chemical (Se) stressors on biomarkers of oxidative stress (glutathione-S-transferase (GST), superoxide dismutase (SOD)), and fish health (condition factor (K), hepatosomatic index (HSI), gross energy) were also examined. Fish of the control group received uncontaminated food, while test fish, either experimentally infected with the nematode Raphidascaris acus or not, were exposed to dietary selenomethionine (Se-Met) at an environmentally relevant dose over 7 weeks. Selenium bioaccumulation by the parasite was low relative to its host, and parasitized trout showed slowed Se accumulation in the muscle as compared to uninfected fish. Furthermore, GST and SOD activities of trout exposed to both Se-Met and parasites were generally significantly lower than in fish exposed to Se-Met alone. Gross energy concentrations, but not K or HSI, were reduced in fish exposed to both Se-Met and R. acus. Together the experiment strongly calls for consideration of parasites when interpreting effects of pollutants on aquatic organisms in field investigations.
在环境研究中,寄生虫通常被视为由于暴露于一种或多种应激源而导致宿主易感性增强的产物,而感染对宿主反应的潜在后果往往被忽视。因此,本研究重点研究了寄生虫对虹鳟(Oncorhynchus mykiss)体内硒(Se)生物蓄积的影响。还研究了生物(寄生虫)和化学(Se)应激源对氧化应激生物标志物(谷胱甘肽-S-转移酶(GST)、超氧化物歧化酶(SOD))和鱼类健康(条件系数(K)、肝体比(HSI)、总能量)的联合影响。对照组的鱼接受未受污染的食物,而实验组的鱼要么实验性地感染了小杆线虫(Raphidascaris acus),要么在 7 周内通过饮食摄入环境相关剂量的硒蛋氨酸(Se-Met)。寄生虫对硒的生物蓄积量相对其宿主较低,与未感染的鱼类相比,感染的鳟鱼肌肉中硒的积累速度较慢。此外,暴露于 Se-Met 和寄生虫的鳟鱼的 GST 和 SOD 活性通常明显低于单独暴露于 Se-Met 的鱼。暴露于 Se-Met 和 R. acus 的鱼的总能量浓度降低,但 K 或 HSI 没有降低。总的来说,实验强烈呼吁在野外调查中解释污染物对水生生物的影响时考虑寄生虫的作用。