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评估“惰性”安全剂苯氧喹啉对摇蚊的毒性:农用化学品混合物的影响。

Assessing the toxicity of the "inert" safener benoxacor toward Chironomus riparius: Effects of agrochemical mixtures.

作者信息

Bolyard Kasey, Gresens Susan E, Ricko Allison N, Sivey John D, Salice Christopher J

机构信息

Environmental Science and Studies Program, Towson University, Townson, Maryland, USA.

Department of Biological Sciences, Towson University, Towson, Maryland, USA.

出版信息

Environ Toxicol Chem. 2017 Oct;36(10):2660-2670. doi: 10.1002/etc.3814. Epub 2017 Jun 22.

Abstract

The environmental effects of safeners, agrochemicals that protect crops from herbicide toxicity, are largely unknown, perhaps because they are classified as inert ingredients. We assessed the toxicity to larvae of Chironomus riparius of 1) the dichloroacetamide safener benoxacor; 2) its degradation product, monochloro-benoxacor; 3) the herbicide with which benoxacor is paired, S-metolachlor; and 4) a mixture of S-metolachlor + benoxacor. Under iron-reducing conditions, benoxacor can undergo reductive dechlorination, producing monochloro-benoxacor. To simulate iron-reducing conditions, we prepared benthic microcosms containing an iron-rich silt-clay sediment amended with cellulose. Larval C. riparius were exposed to single chemicals via spiked sediment at nominal concentrations ranging from 0.01 to 100 mg/kg. Concentrations of a 1:1 mixture of safener and herbicide ranged from 0.02 to 200 mg/kg. Kinetic modeling of microcosm aqueous-phase concentrations indicated that benoxacor transformed with a half-life of 12 d. Cox proportional hazard models of time to emergence during 28-d experiments showed that females had a lowest-observed-effect concentration (LOEC) for benoxacor at 1 mg/kg, whereas their LOEC for monochloro-benoxacor was 0.1 mg/kg. For males, the LOEC for all treatments was 100 mg/kg (200 mg/kg for the mixture). Synergistic effects of the mixture were observed only in females, with a LOEC of 0.2 mg/kg. These results suggest that benoxacor presents a low toxicity risk to C. riparius in environmental systems; however, the possibility of synergistic effects between benoxacor and S-metolachlor merits further investigation. Environ Toxicol Chem 2017;36:2660-2670. © 2017 SETAC.

摘要

安全剂是一类保护作物免受除草剂毒性影响的农用化学品,其环境影响在很大程度上尚不明确,这可能是因为它们被归类为惰性成分。我们评估了以下物质对摇蚊幼虫的毒性:1)二氯乙酰胺类安全剂苯氧唑;2)其降解产物一氯苯氧唑;3)与苯氧唑搭配使用的除草剂精异丙甲草胺;4)精异丙甲草胺+苯氧唑的混合物。在铁还原条件下,苯氧唑可发生还原脱氯反应,生成一氯苯氧唑。为模拟铁还原条件,我们制备了含有富含铁的粉质粘土沉积物并添加纤维素的底栖微观生态系统。将摇蚊幼虫通过加标沉积物暴露于单一化学品中,标称浓度范围为0.01至100毫克/千克。安全剂与除草剂1:1混合物的浓度范围为0.02至200毫克/千克。微观生态系统水相浓度的动力学模型表明苯氧唑的半衰期为12天。在28天实验期间对羽化时间进行的Cox比例风险模型分析表明,雌性摇蚊对苯氧唑的最低观察效应浓度(LOEC)为1毫克/千克,而其一氯苯氧唑的LOEC为0.1毫克/千克。对于雄性摇蚊,所有处理的LOEC均为100毫克/千克(混合物为200毫克/千克)。仅在雌性摇蚊中观察到混合物的协同效应,LOEC为0.2毫克/千克。这些结果表明,苯氧唑在环境系统中对摇蚊的毒性风险较低;然而,苯氧唑与精异丙甲草胺之间产生协同效应的可能性值得进一步研究。《环境毒理学与化学》2017年;36:2660 - 2670。©2017 SETAC。

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