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首页> 外文期刊>Fish Physiology and Biochemistry >Metabolic effects of trichlorfon (Masoten (R)) on the neotropical freshwater fish pacu (Piaractus mesopotamicus)
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Metabolic effects of trichlorfon (Masoten (R)) on the neotropical freshwater fish pacu (Piaractus mesopotamicus)

机译:敌百虫(Masoten(R))对新热带淡水鱼pacu(Piaractus mesopotamicus)的代谢作用

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摘要

Fish parasites are among the crucial limiting factors in aquaculture. The organophosphorous pesticide trichlorfon is widely used as an insecticide and against fish parasites worldwide. In this study, the effects of environmental trichlorfon on biochemical and physiological parameters were investigated in Piaractus mesopotamicus (pacu), a widely farmed fish in South America, through sublethal exposure (8 A mu g L-1, 10 % of the LC50; 96 h) and recovery. The activity of brain acetylcholinesterase (AChE) was reduced after exposure (15.5 %) and remained decreased during the recovery (21.5 %). In white muscle, AChE activity decreased 31 % only after recovery. Alkaline phosphatase (ALP) and acid phosphatase (ACP) activities of the liver, muscle and plasma were steady during exposure. However, after the recovery period, ALP activity was increased in the liver and muscle and decreased in plasma, while ACP was increased in the liver and decreased in muscle. Intermediary metabolism was also affected by trichlorfon, depicting increase of energetic demand (hypoglycemia, neoglucogenesis and lipid catabolism), which remained even after recovery. These results indicate that P. mesopotamicus is adversely affected by sublethal concentrations of trichlorfon and are useful for assessing the impact as well as the pros and cons of its use in controlling fish parasites in aquaculture.
机译:鱼类寄生虫是水产养殖的关键限制因素之一。在世界范围内,有机磷农药敌百虫被广泛用作杀虫剂和鱼类寄生虫。在这项研究中,通过亚致死性暴露(南美甲型L-1,8 A µg L-1,LC50的10%; 96)对环境敌百虫在南美洲广泛养殖的鱼类Piaractus mesopotamicus(pacu)中的生化和生理参数的影响进行了研究。 h)和恢复。暴露后脑乙酰胆碱酯酶(AChE)的活性降低(15.5%),恢复期间仍降低(21.5%)。在白肌中,仅在恢复后AChE活性下降31%。在暴露期间,肝脏,肌肉和血浆的碱性磷酸酶(ALP)和酸性磷酸酶(ACP)活性稳定。但是,恢复期后,肝脏和肌肉中的ALP活性增加,血浆中ALP活性降低,而肝脏中的ACP活性增加,肌肉中ACP活性降低。敌百虫对中间代谢也有影响,表明能量需求增加(低血糖,新糖生成和脂质分解代谢),甚至在恢复后仍然存在。这些结果表明,亚致死浓度的敌百虫会对美索不动杆菌产生不利影响,可用于评估其在水产养殖中控制鱼类寄生虫的影响以及利弊。

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