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Extending standard testing period in honeybees to predict lifespan impacts of pesticides and heavy metals using dynamic energy budget modelling

机译:使用动态能量预算模型延长蜜蜂的标准测试时间以预测农药和重金属的寿命影响

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摘要

Concern over reported honeybee (Apis mellifera spp.) losses has highlighted chemical exposure as a risk. Current laboratory oral toxicity tests in A. mellifera spp. use short-term, maximum 96 hour, exposures which may not necessarily account for chronic and cumulative toxicity. Here, we use extended 240 hour (10 day) exposures to examine seven agrochemicals and trace environmental pollutant toxicities for adult honeybees. Data were used to parameterise a dynamic energy budget model (DEBtox) to further examine potential survival effects up to 30 day and 90 day summer and winter worker lifespans. Honeybees were most sensitive to insecticides (clothianidin > dimethoate ≫ tau-fluvalinate), then trace metals/metalloids (cadmium, arsenic), followed by the fungicide propiconazole and herbicide 2,4-dichlorophenoxyacetic acid (2,4-D). LC50s calculated from DEBtox parameters indicated a 27 fold change comparing exposure from 48 to 720 hours (summer worker lifespan) for cadmium, as the most time-dependent chemical as driven by slow toxicokinetics. Clothianidin and dimethoate exhibited more rapid toxicokinetics with 48 to 720 hour LC50s changes of <4 fold. As effects from long-term exposure may exceed those measured in short-term tests, future regulatory tests should extend to 96 hours as standard, with extension to 240 hour exposures further improving realism.
机译:对报告的蜜蜂(Apis mellifera spp。)损失的担忧表明,化学暴露是一种风险。 A. mellifera spp。中目前的实验室口服毒性测试。使用短期最大96小时的暴露量,不一定能解释慢性和累积毒性。在这里,我们使用延长的240小时(10天)暴露时间来检查七种农用化学品,并跟踪成年蜜蜂的环境污染物毒性。数据用于参数化动态能源预算模型(DEBtox),以进一步检查夏,冬季工人寿命长达30天和90天的潜在生存影响。蜜蜂对杀虫剂(可比宁>二甲磺酸≫-氟戊酸)最敏感,其次是痕量金属/准金属(镉,砷),其次是杀菌剂丙环唑和除草剂2,4-二氯苯氧乙酸(2,4-D)。由DEBtox参数计算得出的LC50s表明,相比镉暴露,镉的暴露时间增加了27倍,镉暴露时间从48到720小时(夏季工人的寿命),这是由缓慢的毒代动力学驱动的时间依赖性最大的化学物质。 Clothianidin和乐果表现出更快的毒代动力学,LC50s在48至720小时内变化<4倍。由于长期暴露的影响可能会超过短期测试中测得的影响,因此未来的监管测试应延长至标准时间为96小时,而延长至240小时的暴露时间将进一步改善真实性。

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