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首页> 外文期刊>Environmental toxicology >Acute Toxicity and Biochemical Effects of Azinphos Methyl in the Amphipod Hyalella curvispina
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Acute Toxicity and Biochemical Effects of Azinphos Methyl in the Amphipod Hyalella curvispina

机译:安非他命甲基在安非他命菌透明质酸中的急性毒性和生化作用

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摘要

We evaluated the acute toxicity and biochemical effects of the organophosphorus pesticide azinphos methyl (AM) in the amphipod Hyalella curvispina that inhabits ponds and irrigation channels of an intensive fruit-producing region in Rio Negro and Neuquen valley, North Patagonia, Argentina. The analysis by nonlinear regression of data from the 96 h-acute toxicity tests indicated the coexistence of two subpopu-lations of H. curvispina with different susceptibilities to AM. The 96 h-LC_(50) for the resistant subpopulation (166 ± 56 μg/L) was 216-fold higher than the 96h-LC_(50) value for the susceptible one (0.77 ± 1.33 μg/L).The two subpopulations could not be distinguished based on the biochemical measurements in control amphi-pods. Cholinesterase activity was significantly inhibited in AM-exposed amphipods in a concentration-dependent manner. The IC_(50) value obtained after 96 h of exposure (2.18 ± 1.95 μg/L) was significantly lower than the 48 h-IC_(50) value (29.6 ± 17.4 μg/L). Carboxylesterase activity was significantly inhibited after 48 h of exposure to 12.5 and 62.5 μg/L AM (inhibition, 51%). This enzyme was thus able to protect cholinesterase from inhibition at 12.5 μg/L AM. Reduced glutathione and catalase showed a significant increase after 24 h of exposure as an adaptive response to AM, whereas glutathione S-transferase activity was not significantly modified. The analysis of species sensitivity distribution showed that both subpopulations of H. curvispina were more tolerant to AM than most amphipod species, and that the susceptible subpopulation was more sensitive to AM than the other local aquatic species analyzed. The maximum concentration of AM in drainage water within the fruit-producing area reported by other studies would affect most of the amphipod species (99%) and also a 44% of local aquatic ones. The results obtained in this study point out the usefulness of including amphipods like H. curvispina in ecotoxicity studies and monitoring programs to perform pesticide risk assessments.
机译:我们评估了居住在阿根廷北巴塔哥尼亚里约内格罗和内乌肯河谷密集集果区的池塘和灌溉渠道的两栖动物Hyalella curvispina中有机磷杀虫剂谷硫磷(AM)的急性毒性和生化作用。通过对96小时急性毒性试验数据的非线性回归分析表明,两种弯曲杆菌亚种共存,对AM的敏感性不同。耐药亚群的96 h-LC_(50)(166±56μg/ L)比易感人群的96h-LC_(50)值(0.77±1.33μg/ L)高216倍。不能根据对照两栖类动物的生化测量来区分。胆碱酯酶活性以浓度依赖性方式显着抑制了AM暴露的两栖动物。暴露96 h(2.18±1.95μg/ L)后获得的IC_(50)值显着低于48 h IC-(50)值(29.6±17.4μg/ L)。暴露于12.5和62.5μg/ L AM 48小时后,羧酯酶活性被显着抑制(抑制率为51%)。因此,该酶能够保护胆碱酯酶免受12.5μg/ L AM的抑制。减少的谷胱甘肽和过氧化氢酶在暴露24小时后显示出对AM的适应性反应的显着增加,而谷胱甘肽S-转移酶的活性没有明显改变。对物种敏感性分布的分析表明,比起大多数两栖动物物种,弯曲毛螺旋藻的两个亚群对AM的耐受性都强,而且易感亚种群比所分析的其他当地水生物种对AM的敏感性更高。其他研究报道,水果产地中排水中AM的最大浓度会影响大多数两栖动物种类(99%),也影响44%的当地水生种类。这项研究获得的结果指出,在生态毒性研究和监测计划中包括象H. curvispina这样的两栖类动物以进行农药风险评估是有用的。

著录项

  • 来源
    《Environmental toxicology》 |2014年第10期|1043-1053|共11页
  • 作者单位

    Grupo LIBIQUIMA, Instituto Multidisciplinario de Investigacion y Desarrollo de la Patagonia Norte, IDEPA (CONICET-UNCo), Argentina,Depto de Quimica, Facultad de Ingenieria, Universidad Nacional del Comahue, Neuquen Province, Argentina;

    Facultad de Ciencias del Ambiente, Universidad Nacional del Comahue, Neuquen Province, Argentina;

    Grupo LIBIQUIMA, Instituto Multidisciplinario de Investigacion y Desarrollo de la Patagonia Norte, IDEPA (CONICET-UNCo), Argentina,Facultad de Ciencias Agrarias, Universidad Nacional del Comahue, Rio Negro Province, Argentina;

    Grupo LIBIQUIMA, Instituto Multidisciplinario de Investigacion y Desarrollo de la Patagonia Norte, IDEPA (CONICET-UNCo), Argentina,Facultad de Ciencias Medicas, Universidad Nacional del Comahue, Rio Negro Province, Argentina;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Crustacean; insecticides; organophosphorus; esterases; antioxidant responses; risk assessment;

    机译:甲壳类;杀虫剂有机磷酯酶抗氧化反应;风险评估;

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