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How Cadmium Could Compromise the Completion of the European Eel's Reproductive Migration

机译:镉如何危害欧洲鳗鱼的生殖迁徙

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The European eel (Anguilla anguilla L.) is severely threatened with extinction. Surprisingly, even though their unusual life cycle makes them particularly vulnerable to pollution, the possible contribution of contamination remains especially poorly known. Here we have investigated the possible effect of cadmium (Cd), a widespread nonessential metal, on eel reproductive capacities. Both control and Cd precontaminated female silver eels were experimentally matured and forced to swim in metal-free conditions to mimic their reproductive migration. Cd pre-exposure was found to strongly stimulate the pituitary-gonad-liver axis of maturing female silver eels leading to early and enhanced vitellogenesis. This was followed by a strong phenomenon of oocyte atresia and eel mortality. These phenomena occurred before oocytes could reach full maturation and were associated with a large entry of both vitellogenin and Cd into the ovaries. Indeed, a redistribution of previously stored cadmium, even from the low Cd levels of control eels, was observed during sexual maturation. Atresia and mortality phenomena were also associated with an overexpression of the pituitary gene encoding the growth hormone, a marker of physiological stress and energy reserves exhaustion. Significantly, these devastating effects of Cd were observed in organisms that presented liver and kidney Cd concentrations still below those observed in eels from Cd contaminated hydrosystems. Our research shows how common levels of cadmium contamination could disrupt endocrine pathways implicated in gonad maturation and subsequently impair reproductive capacity of eel future genitors.
机译:欧洲鳗(Anguilla anguilla L.)受到灭绝的严重威胁。令人惊讶的是,尽管它们的异常生命周期使其特别容易受到污染,但污染的可能贡献仍然知之甚少。在这里,我们研究了鳗鱼生殖能力中广泛存在的非必需金属镉(Cd)的可能作用。对照和Cd预先污染的雌性银e均经过实验成熟,被迫在无金属的条件下游泳以模仿它们的繁殖迁移。发现镉的预暴露强烈刺激成熟的雌性银e的垂体-性腺-肝轴,导致早期和增强的卵黄发生。其次是卵母细胞闭锁和鳗鱼死亡的强烈现象。这些现象发生在卵母细胞完全成熟之前,并且与卵黄蛋白原和Cd大量进入卵巢有关。实际上,在性成熟过程中,甚至从对照鳗鱼的低Cd水平观察到了先前储存的镉的重新分布。闭锁和死亡现象还与垂体基因的过表达有关,该垂体基因编码生长激素,是生理压力和能量储备耗尽的标志。值得注意的是,在具有肝脏和肾脏中Cd浓度仍低于受Cd污染的水生系统的鳗鱼中观察到的生物的生物中观察到了Cd的破坏作用。我们的研究表明,常见的镉污染水平如何破坏与性腺成熟有关的内分泌途径,从而损害鳗future后代的生殖能力。

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