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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Trends in detoxification enzymes and heavy metal accumulation in ground beetles (Coleoptera: Carabidae) inhabiting a gradient of pollution
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Trends in detoxification enzymes and heavy metal accumulation in ground beetles (Coleoptera: Carabidae) inhabiting a gradient of pollution

机译:居住在污染梯度中的地面甲虫(鞘翅目:甲鱼科)中的解毒酶和重金属积累趋势

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Non-specific carboxylesterase and glutathione S-transferase activity was measured in the ground beetle, Pterosthicus oblongopunctatus (Coleoptera: Carabidae), from five site along a gradient of heavy metal pollution. A previous study determined that beetles from the two most polluted sites (site codes OLK2 and OLK3) were more susceptible to additional stressors compared with beetles from the reference site (Stone et al., Environ. Pollut. 113, 239-244 2001), suggesting the possibility of physiological impairment. Metal body burdens in ground beetles from five sites along the gradient ranged from 79 to 201 #mu#g/g Zn, 0.174 to 8.66 #mu#g/g Pb and 1.14 to 10.8 #mu#g/g Cde, whereas Cu seemed to be efficiently regulated regardless of metal levels in the soil. Beetle mid- and hindguts were homogenized and the soluble fraction containing glutathione S-transferase (GST) and carboxylesterase (CaE) was assayed using kinetic analyses. Significantly higher levels of GST were found only in female beetles from the most polluted sites (OLD2 and OLK3; P = 0.049, P < 0.001, respectively) compared with the reference beetles (P = 0.01). Male beetles did not differ in enzyme activity along the metal gradient. Overall, obvious trends in detoxification enzymes were not detected in ground beetles in association with metal body burdens.
机译:在地面甲虫Pterosthicus oblongopunctatus(Coleoptera:Carabidae)的五个位置,沿着重金属污染梯度,测量了非特异性羧酸酯酶和谷胱甘肽S-转移酶的活性。先前的一项研究确定,与参考地点的甲虫相比,污染最严重的两个地点(地点代码OLK2和OLK3)的甲虫更容易受到其他胁迫的影响(Stone等人,Environ。Pollut。113,239-244 2001),提示有生理障碍的可能性。五个位置的甲虫的金属体负担沿Zn梯度范围为79至201#mu#g / g Zn,0.174至8.66#mu#g / g Pb和1.14至10.8#mu#g / g Cde,而Cu似乎无论土壤中的金属含量如何,都可以有效地进行调节。将甲虫中肠和后肠均质化,并使用动力学分析法测定含有谷胱甘肽S-转移酶(GST)和羧酸酯酶(CaE)的可溶性级分。与参照甲虫相比,仅在污染最严重的雌性甲虫(OLD2和OLK3;分别为P = 0.049,P <0.001)中发现了较高的GST水平。沿着金属梯度,雄性甲虫的酶活性没有差异。总体而言,在地面甲虫中未发现与金属身体负担相关的排毒酶明显趋势。

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