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THE GOOD THE BAD AND THE TOXIC: APPROACHING HORMESIS IN DAPHNIA MAGNA EXPOSED TO AN ENERGETIC COMPOUND

机译:好的坏的和有毒的:暴露于精力充沛的化合物的大麦草中的毒气作用

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摘要

A hormetic response is characterized by an opposite effect in small and large doses of chemical exposure, often resulting in seemingly beneficial effects at low doses. Here, we examined the potential mechanisms underlying the hormetic response of Daphnia magna to the energetic trinitrotoluene (TNT). Daphnia magna were exposed to TNT for 21 days and a significant increase in adult length and number of neonates was identified at low concentrations (0.002 – 0.22 mg/L TNT) while toxic effects were identified at high concentrations (0.97 mg/L TNT and above). Microarray analysis of D. magna exposed to 0.004, 0.12, and 1.85 mg/L TNT identified effects on lipid metabolism as a potential mechanism underlying hormetic effects. Lipidomic analysis of exposed D. magna supported the hypothesis that TNT exposure affected lipid and fatty acid metabolism, showing that hormetic effects could be related to changes in polyunsaturated fatty acids known to be involved in Daphnia growth and reproduction. Our results show that Daphnia exposed to low levels of TNT presented hormetic growth and reproduction enhancement while higher TNT concentrations had an opposite effect. Our results also show how a systems approach can help elucidate potential mechanisms of action and adverse outcomes.
机译:在小剂量和大剂量化学暴露中,反作用的特征是相反的作用,通常在低剂量时产生看似有益的作用。在这里,我们检查了潜在的机制,大水蚤对高能的三硝基甲苯(TNT)的刺激反应。大型蚤(Daphnia magna)暴露于TNT中21天,在低浓度(0.002 – 0.22 mg / L TNT)时,成年人的身长和新生儿数量显着增加,而在高浓度(0.97 mg / L TNT及以上)时发现毒性)。对暴露于0.004、0.12和1.85 mg / L TNT的大型D.magna进行的微阵列分析确定了对脂质代谢的影响是潜在的抑制作用的潜在机制。暴露的D. magna的脂质组学分析支持以下假说:TNT暴露会影响脂质和脂肪酸代谢,表明激素效应可能与已知参与水蚤生长和繁殖的多不饱和脂肪酸的变化有关。我们的研究结果表明,暴露于低水平TNT的水蚤表现出激素生长和繁殖增强,而较高TNT浓度则相反。我们的研究结果还表明,系统方法如何有助于阐明潜在的作用机制和不良后果。

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