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溴氰菊酯对鲤鱼幼体的致死多因素活性与pH值、钙和腐殖酸浓度有关。

Deltamethrin lethal multifactorial activity toward carp larva related to pH, calcium, and humic acid concentrations.

作者信息

Ghillebaert F, Prodorutti D, Chaillou C, Roubaud P

机构信息

Groupe d'Embryo-Toxicologie des Poissons du Laboratoire de Cytophysiologie et Toxicologie Cellulaire, Universtié Denis Diderot (Paris 7), France.

出版信息

Ecotoxicol Environ Saf. 1996 Oct;35(1):24-37. doi: 10.1006/eesa.1996.0078.

Abstract

Acute 24-hr embryotoxicity of the pyrethroid insecticide delta-methrin toward carp larvae was tested in multifactorial combinations of three pHs (6.9, 7.8, 9.0), two calcium concentrations ([Ca] = 2 x 10(-4) and 2 x 10(-2) M), and three humic acids concentrations ([HA] = 0, 5, and 100 mg/liter). Lethal effects were determined and compared to the distribution and hexane extractibility of radiolabeled deltamethrin in the solution and on the vessel walls, either in the presence or in the absence of the larvae. As a function of the three combined factors tested, the no observed effect concentrations (NOECs) differed to a maximum by a factor of 8, while they differed by only a factor of 2 with pH alone, and by a factor of 4 with calcium or humic acids alone. No contact toxicity was observed with adsorbed deltamethrin on the vessel walls, on which adsorption and hexane extractibility was increased in the presence of larvae. The most plausible interpretation for the toxicological influence of the physicochemical factors tested on deltamethrin toxicity deals with the deltamethrin distribution in the medium for humic acids, changes in biological targets for calcium influence, and, for pH influence, degradation speed or one of the two other explanations.

摘要

在三种pH值(6.9、7.8、9.0)、两种钙浓度([Ca]=2×10⁻⁴和2×10⁻²M)以及三种腐殖酸浓度([HA]=0、5和100mg/升)的多因素组合中,测试了拟除虫菊酯杀虫剂溴氰菊酯对鲤鱼幼体的急性24小时胚胎毒性。测定了致死效应,并将其与放射性标记溴氰菊酯在溶液中和容器壁上的分布及己烷可提取性进行比较,比较在有或没有幼体存在的情况下进行。作为所测试的三个组合因素的函数,未观察到效应浓度(NOECs)的最大差异为8倍,而仅pH值时差异为2倍,仅钙或腐殖酸时差异为4倍。未观察到容器壁上吸附的溴氰菊酯有接触毒性,在有幼体存在的情况下,容器壁上的吸附和己烷可提取性增加。对于所测试的物理化学因素对溴氰菊酯毒性的毒理学影响,最合理的解释涉及腐殖酸介质中溴氰菊酯的分布、钙影响的生物靶点变化,以及对于pH影响,降解速度或其他两种解释之一。

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