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Silver Exposure Causes Transferable Defects of Phenotypes and Behaviors in Nematode Caenorhabditis elegans

机译:银暴露导致线虫秀丽隐杆线虫的表型和行为的可转移缺陷。

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Silver, as a global pollutant, is severely harmful to human health. However, whether the multi-biological toxicities of silver exposure could be transferred from exposed animals to their progeny has not been clarified. In the present study, we explored the model organism, nematode Caenorhabditis elegans, to analyze the multiple toxicities of silver exposure and their possibly transferable properties. Endpoints of life span, body size, brood size, generation time, body bend and head thrash were used for the evaluation of silver toxicity. High concentrations (75 and 200 μM) of silver exposure caused multi-biological defects of life span, development, reproduction and locomotion behavior, whereas low concentration (2.5 μM) of silver exposure did not resulted in severe life span defects. Moreover, most of these multi-biological toxicities could be transferred from exposed animals to their progeny at different concentrations of silver (2.5, 75 and 200 μM). Only the body bend defects could be largely recovered in progeny animals. The body size defects in progeny of high concentration (75 and 200 μM) of silver exposed animals appeared even more severe than their parents. Therefore, our results suggest that the silver exposure can cause severely multi-biological defects and most of these defects are transferable in C. elegans. These transferred multi-biological defects provide a new evaluation system to indicate or monitor the toxicity from silver exposure.
机译:银是全球污染物,对人体健康具有严重危害。但是,银暴露的多重生物毒性是否可以从暴露的动物转移到它们的后代尚不清楚。在本研究中,我们探索了线虫秀丽隐杆线虫的模型生物,以分析银暴露的多重毒性及其可能的转移特性。使用寿命终点,体重,育雏量,生育时间,身体弯曲和头部bend打来评估银的毒性。高浓度(75和200μM)的银暴露导致寿命,发育,繁殖和运动行为的多种生物学缺陷,而低浓度(2.5μM)的银暴露则没有导致严重的寿命缺陷。此外,这些多种生物毒性中的大多数可以通过不同浓度的银(2.5、75和200μM)从暴露的动物转移至其后代。在子代动物中,只有身体弯曲缺陷才能得到很大的恢复。高浓度(75和200μM)暴露于银的动物后代的体型缺陷似乎比其父母更为严重。因此,我们的结果表明,暴露于银会导致严重的多生物学缺陷,并且大多数这些缺陷可在秀丽隐杆线虫中转移。这些转移的多种生物缺陷提供了一种新的评估系统,以指示或监测银暴露的毒性。

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