首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Antioxidative responses in females and males of the spider Xerolycosa nemoralis (Lycosidae) exposed to natural and anthropogenic stressors
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Antioxidative responses in females and males of the spider Xerolycosa nemoralis (Lycosidae) exposed to natural and anthropogenic stressors

机译:暴露于自然和人为胁迫下的蛛网状蜘蛛Xerolycosa nemoralis(Lycosidae)在雌性和雄性中的抗氧化反应

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摘要

The aim of this study was to assess the intensity of enzymatic antioxidative parameters [i.e., superoxide dismutase (SOD), catalase (CAT), and the glutathione peroxidases each selene dependent, GPOX or selene independent, including GSTPx, glutathione S-transferase, and GST] and non-enzymatic antioxidative parameters [i.e., glutathione total (GSH-t), the heat shock proteins of Hsp70, and metallothioneins (Mt)] in the midgut glands of female and male wolf spiders Xerolycosa nemoralis (Lycosidae) exposed to natural stressors (i.e., heat shock and starvation) and anthropogenic stressors (i.e., the organophosphorous pesticide dimethoate) under laboratory conditions. The spiders were collected from two differentially polluted sites both localized in southern Poland: Olkusz, which is heavily polluted with metals, and Pilica, the reference site. In response to the stressing factors, increases in Hsp70 levels, in the concentrations of total glutathione and in the activity levels of glutathione-dependent enzymes (GPOX, GSTPx, and GST) were found in the midgut glands of males. In the females, high levels of activity of CAT and SOD were revealed, as well as an increased percentage of Mt-positive cells. Preexposed females, in comparison to the individuals from the reference site, responded with increased SOD activity, irrespective of the stressing factor. In contrast, the changes in the antioxidative parameters in the midgut glands of male X. nemoralis seem to reflect a short-term reaction to the applied stressors and do not confirm the effects of long-term selection in a polluted environment.
机译:这项研究的目的是评估酶的抗氧化参数[即超氧化物歧化酶(SOD),过氧化氢酶(CAT)和谷胱甘肽过氧化物酶的强度,这些酶分别依赖于硒,GPOX或硒,包括GSTPx,谷胱甘肽S-转移酶和GST]和暴露于自然环境下的雌性和雄性狼蛛Xerolycosa nemoralis(Lycosidae)的中肠腺中非酶促抗氧化参数[即,谷胱甘肽总量(GSH-t),Hsp70的热激蛋白和金属硫蛋白(Mt)]实验室条件下的应激源(即热休克和饥饿)和人为应激源(即有机磷农药乐果)。从两个分布在波兰南部的污染程度不同的地点收集蜘蛛:奥尔库什(Orkusz)(被金属严重污染)和参考点皮利卡(Pilica)。响应压力因素,在男性中肠腺中发现了Hsp70水平,总谷胱甘肽浓度和谷胱甘肽依赖性酶(GPOX,GSTPx和GST)的活性水平增加。在雌性中,显示出高水平的CAT和SOD活性,以及​​Mt阳性细胞百分比增加。与来自参考部位的个体相比,暴露前的雌性响应的SOD活性增加,而与压力因素无关。相反,雄性X. nemoralis的中肠腺中抗氧化参数的变化似乎反映了对所施加压力的短期反应,并没有证实在污染环境中长期选择的影响。

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