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农药的使用在整个欧洲景观中对熊蜂产生负面影响。

Pesticide use negatively affects bumble bees across European landscapes.

机构信息

Department of Biology, Lund University, Lund, Sweden.

School of Natural Sciences, Trinity College Dublin, Dublin, Ireland.

出版信息

Nature. 2024 Apr;628(8007):355-358. doi: 10.1038/s41586-023-06773-3. Epub 2023 Nov 29.

Abstract

Sustainable agriculture requires balancing crop yields with the effects of pesticides on non-target organisms, such as bees and other crop pollinators. Field studies demonstrated that agricultural use of neonicotinoid insecticides can negatively affect wild bee species, leading to restrictions on these compounds. However, besides neonicotinoids, field-based evidence of the effects of landscape pesticide exposure on wild bees is lacking. Bees encounter many pesticides in agricultural landscapes and the effects of this landscape exposure on colony growth and development of any bee species remains unknown. Here we show that the many pesticides found in bumble bee-collected pollen are associated with reduced colony performance during crop bloom, especially in simplified landscapes with intensive agricultural practices. Our results from 316 Bombus terrestris colonies at 106 agricultural sites across eight European countries confirm that the regulatory system fails to sufficiently prevent pesticide-related impacts on non-target organisms, even for a eusocial pollinator species in which colony size may buffer against such impacts. These findings support the need for postapproval monitoring of both pesticide exposure and effects to confirm that the regulatory process is sufficiently protective in limiting the collateral environmental damage of agricultural pesticide use.

摘要

可持续农业需要在作物产量和农药对非目标生物(如蜜蜂和其他作物传粉媒介)的影响之间取得平衡。田间研究表明,农业中使用新烟碱类杀虫剂会对野生蜜蜂物种产生负面影响,导致对这些化合物的限制。然而,除了新烟碱类杀虫剂之外,缺乏关于景观中农药暴露对野生蜜蜂影响的田间证据。蜜蜂在农业景观中会遇到许多杀虫剂,而这种景观暴露对任何蜜蜂物种的群体生长和发育的影响仍不清楚。在这里,我们表明,在熊蜂采集的花粉中发现的许多杀虫剂与作物花期时群体表现下降有关,尤其是在农业集约化程度较高的简化景观中。我们在 8 个欧洲国家的 106 个农业地点的 316 个熊蜂群体中的结果证实,即使对于一种社会性传粉媒介物种,其群体规模可能会缓冲这种影响,监管系统也未能充分防止与农药相关的对非目标生物的影响。这些发现支持在批准后对农药暴露和效果进行监测的需要,以确认监管程序在限制农业农药使用的附带环境损害方面具有足够的保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f1f/11006599/c1c49c82e3fa/41586_2023_6773_Fig1_HTML.jpg

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