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Effects of Metal Exposure on Associative Learning Behavior in Nematode Caenorhabditis elegans

机译:金属暴露对线虫秀丽隐杆线虫联想学习行为的影响

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In the present study, the thermotaxis model was used to evaluate the effects of metal exposure at different concentrations on associative learning behavior in nematodes. The examined nematodes were cultured at 25 or 17°C, and then shifted to 20°C condition. Based on the ability of nematodes to trace the temperature of 20°C, exposure to 10 μM of all examined metals and 2.5 μM Pb and Hg caused significant decrease of associative learning behavior at time intervals of 5 and 18 h; however, exposure to 2.5 μM Cu, Zn, and Ag did not influence associative learning behavior. Moreover, exposure to 2.5 and 10 μM of examined metals did not influence body bend and thermotaxis to cultivation temperature, whereas exposure to 50 μM of examined metals caused significant reduction of body bend and thermotaxis to cultivation temperature. Furthermore, Pb and Hg were the more toxic among the examined metals, with severe toxicity on associative learning behavior, thermotaxis, and locomotion behavior in nematodes.
机译:在本研究中,使用热出租车模型来评估不同浓度的金属暴露对线虫联想学习行为的影响。检查的线虫在25或17°C下培养,然后转移到20°C条件下。基于线虫追踪20°C温度的能力,暴露于10μM的所有检测金属以及2.5μM的Pb和Hg会在5和18 h的时间间隔内显着降低联想学习行为;但是,暴露于2.5μM的Cu,Zn和Ag不会影响联想学习行为。此外,暴露于2.5和10μM的检测金属不会影响人体弯曲和热力学对培养温度的影响,而暴露于50μM的检测金属则导致人体弯曲和热趋于培养温度的显着降低。此外,在所检查的金属中,铅和汞的毒性更高,对线虫的联想学习行为,趋热性和运动行为具有严重的毒性。

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