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Blueberry IPM: Past Successes and Future Challenges
Annual Review of Entomology ( IF 23.8 ) Pub Date : 2019-01-10 00:00:00 , DOI: 10.1146/annurev-ento-011118-112147
Cesar Rodriguez-Saona 1 , Charles Vincent 2 , Rufus Isaacs 3
Affiliation  

Blueberry is a crop native to North America with expanding production and consumption worldwide. In the historical regions of production, integrated pest management (IPM) programs have been developed and provided effective control of key insect pests. These have integrated monitoring programs with physical, cultural, biological, behavioral, and chemical controls to meet the intense demands of consumers and modern food systems. Globalization of the blueberry industry has resulted in new pest-crop associations and the introduction of invasive pests into existing and new blueberry-growing areas. Invasive pests—in particular spotted wing drosophila—have been highly disruptive to traditional IPM programs, resulting in increased use of insecticides and the potential to disrupt beneficial insects. Moreover, regulatory agencies have reduced the number of broad-spectrum insecticides available to growers while facilitating registration and adoption of reduced-risk insecticides that have a narrower spectrum of activity. Despite these new tools, increasing international trade has constrained insecticide use because of maximum residue limits, which are often not standardized across countries. Great potential remains for biological, behavioral, cultural, and physical methods to contribute to blueberry IPM, and with more regions investing in blueberry research, we expect regionally relevant IPM programs to develop in the new production regions.

中文翻译:


蓝莓IPM:过去的成功和未来的挑战

蓝莓是北美洲的一种农作物,在全球范围内都在扩大生产和消费。在生产的历史区域中,已经制定了病虫害综合防治(IPM)计划,并提供了对关键病虫害的有效控制。这些具有集成的监控程序,具有物理,文化,生物,行为和化学控制,可以满足消费者和现代食品系统的强烈需求。蓝莓产业的全球化导致了新的虫害作物协会,并将入侵性虫害引入了现有的和新的蓝莓种植区。入侵性害虫(尤其是斑翅果蝇)对传统的IPM计划具有极高的破坏力,导致杀虫剂的使用增加,并有可能破坏有益的昆虫。而且,监管机构减少了种植者可获得的广谱杀虫剂的数量,同时促进了注册和采用活动范围较窄的降低风险的杀虫剂。尽管有这些新工具,但由于最大残留限量,国际间贸易的增长限制了杀虫剂的使用,而各国之间通常对此并没有标准化的限制。生物学,行为,文化和物理方法对蓝莓IPM的贡献仍具有巨大的潜力,并且随着更多的地区对蓝莓研究进行投资,我们期望在新的生产地区开发与地区相关的IPM计划。由于最大残留限量,国际间贸易的增长限制了杀虫剂的使用,而各国之间通常对此并没有统一的标准。生物学,行为,文化和物理方法对蓝莓IPM的贡献仍具有巨大的潜力,并且随着更多的地区对蓝莓研究进行投资,我们期望在新的生产地区开发与地区相关的IPM计划。由于最大残留限量,国际间贸易的增长限制了杀虫剂的使用,而各国之间通常对此并没有统一的标准。生物学,行为,文化和物理方法对蓝莓IPM的贡献仍具有巨大的潜力,并且随着更多的地区对蓝莓研究进行投资,我们期望在新的生产地区开发与地区相关的IPM计划。

更新日期:2019-01-10
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