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在综合病虫害与传粉者管理框架中使用农药以保护传粉者健康。

Pesticide use in integrated pest and pollinator management framework to protect pollinator health.

作者信息

Phan Ngoc T, Biddinger David J, Rajotte Edwin G, Smagghe Guy, Reddy Gadi Vp, Ren Zong-Xin, Joshi Neelendra K

机构信息

Department of Entomology and Plant Pathology, University of Arkansas, Fayetteville, AR, USA.

Research Center for Tropical Bees and Beekeeping, Hanoi, Vietnam.

出版信息

Pest Manag Sci. 2025 Apr;81(4):1691-1696. doi: 10.1002/ps.8582. Epub 2024 Dec 9.

Abstract

Agricultural pesticides have historically been a critical tool in controlling pests and diseases, preventing widespread suffering and crop losses that led to catastrophes such as the Great Irish Famine (1845-1852) and the Cotton Boll Weevil Infestation (1915-1916). However, their usage has brought challenges, including resistance development, secondary pest outbreaks, harm to non-target organisms like pollinators, and environmental contamination. In response to these concerns, integrated pest management (IPM) has emerged as a comprehensive approach, emphasizing non-chemical pest control methods such as cultural practices, biological control, and crop rotation, with pesticides as the last resort. IPM has evolved, influenced by regulations like the Food Quality Protection Act (FQPA), which prioritizes human health protection, especially for children. The development of systemic pesticides, particularly neonicotinoids, introduced a more efficient and targeted pest control method within the IPM framework. However, they have also raised concerns due to their potential adverse effects on pollinators. In recent years, integrated pest and pollinator management (IPPM) has emerged as an enhanced approach, integrating pollinator health considerations into pest management strategies. In this article, we discuss this new approach, and briefly present an example of a modifying pesticide program in Pennsylvania apple orchards to illustrate the application of IPPM, in order to highlight the importance of IPPM in sustaining agriculture, protecting vital pollinators, and maintaining effective pest control practices. © 2024 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

从历史上看,农业杀虫剂一直是控制病虫害的关键工具,可防止导致诸如爱尔兰大饥荒(1845 - 1852年)和棉铃象甲虫害(1915 - 1916年)等灾难的广泛苦难和作物损失。然而,它们的使用也带来了挑战,包括抗药性的发展、次要害虫的爆发、对传粉者等非目标生物的危害以及环境污染。针对这些问题,综合虫害管理(IPM)应运而生,它是一种综合方法,强调采用文化措施、生物防治和作物轮作等非化学虫害控制方法,而将杀虫剂作为最后手段。受《食品质量保护法》(FQPA)等法规的影响,IPM不断发展,这些法规将保护人类健康,尤其是儿童健康作为优先事项。系统性杀虫剂,特别是新烟碱类杀虫剂的开发,在IPM框架内引入了一种更高效、更具针对性的害虫控制方法。然而,由于它们对传粉者可能产生的不利影响,也引发了人们的担忧。近年来,综合虫害与传粉者管理(IPPM)作为一种强化方法出现,将传粉者健康考虑纳入虫害管理策略。在本文中,我们讨论这种新方法,并简要介绍宾夕法尼亚州苹果园修改农药计划的一个例子,以说明IPPM的应用,从而突出IPPM在维持农业、保护重要传粉者以及保持有效的害虫控制措施方面的重要性。© 2024作者。由John Wiley & Sons Ltd代表化学工业协会出版的《害虫管理科学》。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f06e/11906915/8852d7a58ed9/PS-81-1691-g002.jpg

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