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Cellular stress reactions assessed by gender and species in spiders from areas variously polluted with heavy metals

机译:通过性别和物种评估来自不同重金属污染地区蜘蛛的细胞应激反应

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In the funnel web spider Agelena labyrinthica (Agelenidae; A. l.), sheet web spider Linyphia triangularis (Linyphiidae; L. t.) and wolf spider Xerolycosa nemoralis (Lycosidae; X. n.) from two differently polluted meadow sites in southern Poland, we studied the relations between antioxidant parameters (glutathione, GSH; glutathione peroxidases, GPOX, GSTPx; catalase, CAT; stress proteins-Hsp70, metallothioneins Mts), the intensity of apoptosis and necrosis, and heavy metal burdens of the midgut gland. Cellular reactions against stress caused by pollutants seemed to be sex-dependent. The concentrations of Zn and Cu in the midgut glands of male A. l. and X. n. were more than double that of the females, from both study sites. In male spiders from the heavily polluted site, both negative correlations (activity of caspase-3-like proteins vs Cu, Zn concentration; number of depolarized mitochondria vs Cu concentration) and positive correlations (number of necrotic cells vs Cu concentrations; activity of CAT vs Zn ) were noted. The defense of males against high metal content and its prooxidative effects is based mainly on GSH and CAT. In females the antioxidative reactions are species-specific and depend mainly on high peroxidase activity and on stress protein level. The increase in the number of apoptotic cells in the midgut gland of female spiders from the heavily polluted site suggests the defensive role of this process in maintaining the proper functioning of this organ.
机译:在漏斗蜘蛛Agelena labyrinthica(Agelenidae; A. l。),片状蜘蛛Linyphia triangleis(Linyphiidae; L. t。)和狼蛛Xerolycosa nemoralis(Lycosidae; X.n.)中,它们来自南部两个受污染程度不同的草地在波兰,我们研究了抗氧化剂参数(谷胱甘肽,GSH;谷胱甘肽过氧化物酶,GPOX,GSTPx;过氧化氢酶,CAT;应激蛋白-Hsp70,金属硫蛋白Mts),细胞凋亡和坏死强度以及中肠腺重金属之间的关系。细胞对由污染物引起的压力的反应似乎与性别有关。雄性A.l.中肠中Zn和Cu的含量。和X。这两个研究地点的女性人数是女性的两倍以上。在污染严重的雄性蜘蛛中,负相关(caspase-3样蛋白的活性与Cu,Zn的浓度;去极化线粒体的数量对Cu的浓度)和正相关(坏死细胞的数量对Cu的浓度; CAT的活性) vs Zn)。雄性对高金属含量及其抗氧化作用的防御主要基于GSH和CAT。在女性中,抗氧化反应是特定于物种的,主要取决于高过氧化物酶活性和应激蛋白水平。污染严重的雌性蜘蛛的中肠腺中凋亡细胞数量的增加表明该过程在维持该器官正常功能中的防御作用。

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