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Neonicotinoids in U.S. maize: Insecticide substitution effects and environmental risk

机译:美国玉米新烟蛋白剂:杀虫剂替代效应和环境风险

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This study exploits a novel dataset containing more than 89,000 farm-level surveys over a 17-year period to investigate how neonicotinoid seed treatments in maize, now ubiquitous, have affected the use of other insecticides. Neonicotinoid insecticides are the most used class of insecticides in the world, but they are controversial because of their high toxicity to honeybees. In the United States, maize production accounts for the majority of neonicotinoid use, mostly as seed treatments. We find that neonicotinoids substituted for other major insecticides: plots planted with neonicotinoid-treated seeds were 52% and 47% less likely to be treated with pyrethroid and organophosphate insecticides, respectively. Although honeybees have been put at greater risk by neonicotinoids, the changed pattern of pest control instruments has reduced toxicity risk for mammals, birds, and fish. We also find that adoption of genetically engineered insect-resistant maize varieties significantly reduced the use of organophosphate and pyrethroid insecticides, thereby reducing toxicity exposure to all examined taxa. Policies aimed at restricting neonicotinoid use may need to account for undesirable unintended consequences. (C) 2020 Elsevier Inc. All rights reserved.
机译:本研究利用了一个新的数据集,该小型数据集含有超过89,000个农业水平调查的新型数据集,以研究玉米,现在普遍存在的玉米种子治疗如何影响其他杀虫剂的使用。 Neonicotinoid杀虫剂是世界上使用的最常用类的杀虫剂,但它们是争议的,因为它们对蜜蜂的高毒性。在美国,玉米生产占大多数新烟碱类化合物的使用,主要是作为种子治疗。我们发现对其他主要杀虫剂取代的新烟蛋白醇:用肽和有机磷酸有机磷酸杀虫剂处理的含有新烟碱处理的种子的地块分别为52%和47%。虽然蜜蜂被Neonicotinoids患有更大的风险,但害虫控制仪器的改变模式已经降低了哺乳动物,鸟类和鱼类的毒性风险。我们还发现采用基因工程抗虫玉米品种显着降低了有机磷酸盐和拟除虫菊酯杀虫剂的使用,从而降低了所有检查的分类群的毒性暴露。旨在限制新霉素使用的政策可能需要考虑不良意外后果。 (c)2020 Elsevier Inc.保留所有权利。

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