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首页> 外文期刊>Fish Physiology and Biochemistry >Response of Cyprinus carpio to copper exposure: alterations in reduced glutathione, catalase and proteins electrophoretic patterns
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Response of Cyprinus carpio to copper exposure: alterations in reduced glutathione, catalase and proteins electrophoretic patterns

机译:鲤鱼对铜暴露的响应:谷胱甘肽,过氧化氢酶和蛋白质电泳图谱减少的改变

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This study was conducted to characterize the alterations in reduced glutathione (GSH) level, catalase (CAT) activity and proteins electrophoretic patterns in response to sublethal copper (Cu) exposure in Cyprinus carpio and to determine whether these responses are related to Cu accumulation in gills, chosen as target tissue. Fish were exposed to 0.1 and 1.0 mg/l Cu for 10 and 20 days. There were increasing level of Cu in the gill with increasing concentrations of metal in the exposure medium, and with increasing duration of exposure. GSH level and CAT activity increased in fish exposed to 1.0 mg/l Cu for both exposure periods, while no change was detected at the lower Cu concentration. Electrophoretic patterns of gill proteins by sodium dodecyl sulphate gel electrophoresis (SDS–PAGE) consist of 25-, 26-, 30-, 44- and 48-kDA medium molecular weight proteins (MMP) for five bands and 64-, 72-, 90- and 101-kDA high molecular weight proteins (HMP) for four bands in both control and treatment groups. The levels of 25-, 26- and 30-kDA MMP and 72- and 90-kDA HMP increased in response to Cu exposure. The present study demonstrated that Cu caused stress in fish gills and an acclimation with induction of GSH, CAT, MMP and HMP, which were important in the protection against metal damage, was observed.
机译:进行这项研究来表征鲤鱼中亚致死铜(Cu)暴露时谷胱甘肽(GSH)水平,过氧化氢酶(CAT)活性和蛋白质电泳模式的变化,并确定这些响应是否与Cu中的铜积累有关,选作目标组织。将鱼暴露于0.1和1.0 mg / l的铜中10天和20天。随着暴露介质中金属浓度的增加以及暴露时间的延长,ill中的铜含量也随之增加。在两个暴露期中,暴露于1.0 mg / l Cu的鱼的GSH水平和CAT活性均增加,而在较低的Cu浓度下未检测到变化。十二烷基硫酸钠凝胶电泳(SDS-PAGE)对g蛋白的电泳图谱由五个谱带的25-,26-,30-,44-和48-kDA中分子量蛋白(MMP)和64-,72-,对照组和治疗组中四个带的90和101 kDA高分子量蛋白(HMP)。 25-,26-和30-kDA MMP以及72-和90-kDA HMP的水平随铜暴露而增加。本研究表明,铜引起了鱼stress的应激,并观察到了对GSH,CAT,MMP和HMP的诱导适应,这对防止金属损伤很重要。

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