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The Hawaii Protocol for Scientific Monitoring of Coffee Berry Borer: a Model for Coffee Agroecosystems Worldwide

机译:科学监控夏威夷浆果咖啡的夏威夷议定书:全球咖啡农业生态系统的模型

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摘要

Coffee berry borer (CBB) is the most devastating insect pest for coffee crops worldwide. We developed a scientific monitoring protocol that is aimed at capturing and quantifying the dynamics and impact of this invasive insect pest as well as the development of its host plant across a heterogeneous landscape. The cornerstone of this comprehensive monitoring system is timely georeferenced data collection on CBB movement, coffee berry infestation, mortality by the fungus Beauveria bassiana, and coffee plant phenology via a mobile electronic data recording application. This electronic data collection system allows field records to be georeferenced through built-in global positioning systems, and is backed by a network of weather stations and records of farm management practices. Comprehensive monitoring of CBB and host plant dynamics is an essential part of an area-wide project in Hawaii to aggregate landscape-level data for research to improve management practices. Coffee agroecosystems in other parts of the world that experience highly variable environmental and socioeconomic factors will also benefit from implementing this protocol, in that it will drive the development of customized integrated pest management (IPM) to manage CBB populations.
机译:咖啡浆果蛀虫(CBB)是全世界咖啡农作物中最具破坏力的害虫。我们开发了一种科学的监测方案,旨在捕获和量化这种入侵性虫害的动态和影响,以及其跨异质景观的寄主植物的发育。该综合监控系统的基础是通过移动电子数据记录应用程序及时地地理参考有关CBB运动,咖啡浆果出没,真菌白僵菌引起的死亡率以及咖啡植物物候的地理参考数据。该电子数据收集系统允许通过内置的全球定位系统对实地记录进行地理参考,并由气象站网络和农场管理实践记录提供支持。全面监测CBB和寄主植物动态是夏威夷一个区域项目的重要组成部分,该项目汇总景观级别的数据以供研究以改善管理实践。该协议的实施也将受益于世界其他地区经历高度可变的环境和社会经济因素的咖啡农业生态系统,因为它将推动定制病虫害综合治理(IPM)的发展,以管理CBB种群。

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