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四聚乙醛亚致死剂量对福寿螺AchE、GSTs和MFO活性的影响

作  者:
张文领;牟希东;韦慧;杨叶欣;徐猛;罗渡;胡隐昌
单  位:
农业部热带亚热带水产资源利用与养殖重点实验室
关键词:
四聚乙醛;福寿螺;亚致死效应;解毒酶系
摘  要:
为了解亚致死剂量四聚乙醛对福寿螺的主要靶标酶和解毒酶活性的影响,研究了0.50mg/L的四聚乙醛处理不同时间后福寿螺不同组织中乙酰胆碱酯酶(AchE)、谷胱甘肽S-转移酶(GSTs)和多功能氧化酶(MFO)的活力变化。结果显示,四聚乙醛对福寿螺具有良好的杀灭效果,96hLC50为3.856mg/L,安全浓度为0.039mg/L;在用0.50mg/L的四聚乙醛处理的24h内,福寿螺鳃和腹足内AchE酶活力分别升高到未处理时的1.565和1.481倍而后下降,肝和肠组织内AchE酶活力分别下降为未处理时的0.132、0.282倍而后升高;不同组织中GSTs酶活力均呈现为"降低—升高—降低"的趋势;不同组织内MFO酶活力均为先下降后上升的趋势。研究表明0.50mg/L的四聚乙醛能诱导AchE、MFO和GST活性不同程度的增加,解毒酶MFO和GSTs可能在四聚乙醛的代谢中起着一定作用。
译  名:
Effects of sublethal dose of metaldehyde on the activities of AchE,GSTs and MFO in Pomacea canaliculata
作  者:
Zhang Wenling;Mu Xidong;Wei Hui;Yang Yexin;Xu Meng;Luo Du;Hu Yinchang;Key Laboratory of Tropical &Subtropical Fishery Resource Application &Cultivation,Ministry of Agriculture,Pearl River Fisheries Research Institute,Chinese Academy of Fishery Sciences;College of Fisheries and Life Sciences,Shanghai Ocean University;
关键词:
metaldehyde;;Pomacea canaliculata;;sublethal effect;;detoxification enzyme
摘  要:
To explore the sublethal effect of metaldehyde exposure on main target enzymes and detoxification enzymes in Pomacea canaliculata,the activity dynamics of AchE,GSTs and MFO were measured under sublethal concentrations of metaldehyde.The results showed that metaldehyde could significantly kill P.canaliculata,and96 h LC50 and the safe concentration were 3.856 mg/L and0.039 mg/L,respectively.Under 0.50 mg/L metaldehyde stress,AchE enzyme activity in gills and pleopod increased to 1.565 and 1.481 times as that of the control group,respectively,while the AchE activity in liver and intestine decreased to 0.132 and 0.282 times as that of the control group,respectively,but increased subsequently.GSTs activities were presented as a trend of "decrease-increase-decrease";MFO activities decreased at the beginning and then were induced to increase to different extents.The results indicated that the activities of AchE,MFO and GSTs were induced to enhance to some extent during metaldehyde metabolism,and MFO and GSTs might play important roles in metaldehyde metabolism.

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