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Enantioselective bioaccumulation and toxic effects of fipronil in the earthworm Eisenia foetida following soil exposure

机译:暴露于土壤的EEisenia foetida中氟虫腈的对映选择性生物蓄积和毒性作用

摘要

BACKGROUND: Enantiomers of chiral pesticides often have different bioactivity, toxicity and environmental behaviours. Fipronil has been used in racemate for agricultural purposes against soil insects, leading to increased inputs into soil environments and complex biota exposures. To understand the potential risk associated with fipronil enantiomer exposure, subchronic toxicity and bioaccumulation tests with earthworms (Eisenia foetida) in fipronil-spiked soils were evaluated under laboratory conditions. RESULTS: Enantioselective toxicity was measured in E. foetida biomass after 28 days of subchronic exposure, with increased toxicity from racemate and S-fipronil compared with R-fipronil. The bioaccumulation of fipronil in earthworm tissues was also enantioselective, with a preferential accumulation of S-fipronil, and the enantiomer fraction was approximately 0.56 - 0.60. During soil exposure, fipronil was transformed primarily into fipronil sulfide, sulfone and amide, and E. foetida rapidly accumulated fipronil and sulfone. CONCLUSION: This work demonstrates the enantioselective subchronic toxicity and bioaccumulation of enantiomers of fipronil in E. foetida. The earthworm tissues exhibited a relative enrichment of fipronil and fipronil sulfone, and these compounds might biomagnify (with a biota-to-soil accumulation factor of >= 1.0 kg(oc) kg(lip)(-1)), allowing for the possible trophic transfer and/or lip bioaccumulation of all these chemicals if earthworms were consumed by predator organisms. (C) 2014 Society of Chemical Industry
机译:背景:手性农药的对映异构体通常具有不同的生物活性,毒性和环境行为。 Fipronil已在外消旋物中用于农业目的,以对抗土壤中的昆虫,导致对土壤环境的投入增加以及复杂的生物群落暴露。为了了解与氟虫腈对映异构体暴露相关的潜在风险,在实验室条件下评估了氟虫腈加标土壤中亚慢性毒性和with(Eisenia foetida)的生物蓄积性测试。结果:在亚慢性暴露28天后,对大肠埃希菌的生物量进行了对映选择性毒性试验,与R-fipronil相比,外消旋物和S-fipronil的毒性增加。 pro组织中氟虫腈的生物积累也是对映选择性的,其中S-氟吡尼优先积累,对映体部分约为0.56-0.60。在土壤暴露过程中,氟虫腈主要转化为氟虫腈硫化物,砜和酰胺,而大肠埃希菌迅速积累了氟虫腈和砜。结论:这项工作证明了氟虫腈的对映体亚慢性毒性和对映体的生物富集。 s组织中氟虫腈和氟虫腈砜相对富集,这些化合物可能会被生物放大(生物-土壤累积因子> = 1.0 kg(oc)kg(lip)(-1)),从而可能如果earth被捕食生物吃掉,所有这些化学物质的营养转移和/或嘴唇生物蓄积。 (C)2014年化学工业学会

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