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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Assessing the impact of triazine herbicides on organophosphate insecticide toxicity to the earthworm Eisenia fetida.
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Assessing the impact of triazine herbicides on organophosphate insecticide toxicity to the earthworm Eisenia fetida.

机译:评估三嗪除草剂对有机磷杀虫剂对f Eisenia fetida的毒性的影响。

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摘要

A standard Organization for Economic Cooperation and Development (OECD) filter paper test was used to assess the acute toxicity of chlorpyrifos, atrazine, cyanazine, and simazine to the earthworm Eisenia fetida. Acute toxicity of chlorpyrifos was also determined in combination with the three-triazine herbicides. Surprisingly, atrazine and cyanazine caused mortality at concentrations lower than chlorpyrifos. Atrazine and cyanazine also increased the toxicity of chlorpyrifos 7.9- and 2.2-fold, respectively. However, simazine caused no toxicity to the worms and did not affect chlorpyrifos toxicity in binary mixture experiments. Possible mechanisms for the greater-than-additive toxicity for the binary combinations of atrazine and cyanazine with chlorpyrifos were investigated, including changes in uptake and biotransformation rates of chlorpyrifos in the presence of atrazine. Uptake of chlorpyrifos into the worms decreased slightly when atrazine was present in the system, therefore eliminating increased uptake as a possible explanation for the increased toxicity. Body residue analysis of worms indicated increased metabolite formation, suggesting the greater-than-additive response may be due to increased biotransformation to more toxic oxon metabolites.
机译:使用标准的经济合作与发展组织(OECD)滤纸测试来评估毒死rif,at去津,氰嗪和西azine嗪对f艾美体的急性毒性。毒死rif的急性毒性也与三三嗪类除草剂联合测定。令人惊讶的是,阿特拉津和氰嗪在低于毒死rif的浓度下导致死亡率。阿特拉津和氰嗪也分别使毒死rif的毒性增加了7.9倍和2.2倍。但是,在二元混合物实验中,辛嗪对蠕虫没有毒性,也没有影响毒死rif的毒性。研究了at去津和氰嗪与毒死rif的二元组合产生大于加成毒性的可能机理,包括在at去津存在下毒死rif的吸收和生物转化速率的变化。当系统中存在阿特拉津时,蠕虫对毒死s的吸收略有减少,因此消除了吸收的增加,这可能是毒性增加的可能原因。蠕虫的身体残留分析表明代谢物形成增加,这表明大于叠加反应的原因可能是由于生物转化为毒性更高的氧代代谢产物所致。

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