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Multigenerational Exposure to WCCo Nanomaterials—Epigenetics in the Soil Invertebrate Enchytraeus crypticus

机译:土壤无脊椎动物中的WCCO纳米材料 - 外膜细胞的多粒性暴露

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摘要

It has become clear how important it is to assess longer term effects of (nano) materials in the environment given the current evidence showing how epigenetics drives response mechanisms. Here we studied global DNA methylation in standard soil invertebrate Enchytraeus crypticus over 224 days when exposed to nanostructured tungsten carbide cobalt (WCCo nanomaterials (NMs)) and to cobalt (CoCl2) in a multigenerational experiment. In order to assess the transgenerational effect, we used a multigenerational (MG) test design consisting of four generations in spiked soil followed by two generations in clean soil. Results showed that MG exposure to WCCo NMs caused global DNA methylation to increase, which continued in unexposed generations and was associated with an increase in reproduction (phenotypic effect). In general, WCCo NMs caused more (and more consistent) methylation than CoCl2.
机译:鉴于目前的证据表明EPigenetics如何推动响应机制,评估环境中(纳米)材料的延长术语效果的延长术语效应是多么重要的。在这里,我们在多才实验中暴露于纳米结构碳化钨(WCCO纳米材料)和钴(COCl2)时,在224天内研究了标准土壤中的标准土壤中的全球DNA甲基化。为了评估转基因效应,我们使用由尖刺土壤中的四代组成的多粒(Mg)测试设计,然后在干净的土壤中进行两代。结果表明,MG暴露于WCCO NMS导致全球DNA甲基化增加,其在未曝光世代继续,并与繁殖(表型效应)的增加有关。通常,WCCO NMS引起比COCl2更多(更一致)的甲基化。

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