首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >DNA damage in earthworms from highly contaminated soils: Assessing resistance to arsenic toxicity by use of the Comet assay.
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DNA damage in earthworms from highly contaminated soils: Assessing resistance to arsenic toxicity by use of the Comet assay.

机译:来自高度污染土壤的worm中的DNA损害:通过彗星试验评估对砷毒性的抗性。

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摘要

Earthworms native to the former mine site of Devon Great Consols (DGC), UK reside in soils highly contaminated with arsenic (As). These earthworms are considered to have developed a resistance to As toxicity. The mechanisms underlying this resistance however, remain unclear. In the present study, non-resistant, commercially sourced Lumbricus terrestris were exposed to a typical DGC soil in laboratory mesocosms. The earthworms bio-accumulated As from the soil and incurred DNA-damage levels significantly above those observed in the control mesocosm (assessed using the Comet assay). A dose response was observed between DNA damage (% tail DNA) and As concentration in soil (control, 98, 183, 236, 324 and 436mgkg(-1)). As-resistant earthworms (Lumbricus rubellus, Dendrodrilus rubidus and L. terrestris) collected from contaminated soils at DGC (203 to 9025mgkg(-1) As) had also bio-accumulated high levels of As from their host soils, yet demonstrated low levels of DNA damage compared with earthworms from uncontaminated sites. The results demonstrate that the As-contaminated soils at DGC are genotoxic to non-native earthworms and much less so to earthworms native to DGC, thus providing further evidence of an acquired resistance to As toxicity in the native earthworms.
机译:UK原产于英国德文郡大康索尔(DGC)的前矿区,reside生活在被砷(As)高度污染的土壤中。这些earth被认为对砷毒性具有抗性。然而,这种抵抗的机制尚不清楚。在本研究中,将非抗药性,商业来源的Lu藜暴露于实验室中膜下的典型DGC土壤中。 from从土壤中生物富集,其DNA破坏水平明显高于对照中观(在彗星试验中评估)。在DNA损伤(%尾巴DNA)和土壤中As浓度之间(浓度为98、183、236、324和436mgkg(-1))观察到剂量反应。从DGC(203至9025mgkg(-1)As)受污染的土壤中收集的抗性earth(Lumbricus rubellus,Dendrodrilus rubidus和L. terrestris)也从其宿主土壤中生物富集了高水平的As,但显示出低水平的与来自未污染部位的earth相比,DNA损伤更大。结果表明,在DGC处被As污染的土壤对非本地earth具有遗传毒性,而对DGC本地的earth则具有遗传毒性,因此进一步证明了天然the具有获得的抗As毒性的证据。

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