Examples of Risk Tools for Pests in Peanut (Arachis hypogaea) Developed for Five Countries Using Microsoft Excel

IF 2.4 3区 农林科学 Q1 ENTOMOLOGY Journal of Integrated Pest Management Pub Date : 2022-01-01 DOI:10.1093/jipm/pmac017
D. Jordan, G. S. Buol, R. Brandenburg, D. Reisig, J. Nboyine, M. Abudulai, R. Oteng‐Frimpong, Moses Brandford Mochiah, J. Asibuo, S. Arthur, R. Akromah, W. Mhango, Justus M Chintu, Sergio Morichetti, J. Paredes, J. H. Monguillot, Kuldeep Singh Jadon, B. Shew, P. Jasrotia, P. Thirumalaisamy, G. Harish, P. Holajjer, Nataraja Maheshala, G. MacDonald, D. Hoisington, J. Rhoads
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Abstract

Suppressing pest populations below economically-damaging levels is an important element of sustainable peanut (Arachis hypogaea L.) production. Peanut farmers and their advisors often approach pest management with similar goals regardless of where they are located. Anticipating pest outbreaks using field history and monitoring pest populations are fundamental to protecting yield and financial investment. Microsoft Excel was used to develop individual risk indices for pests, a composite assessment of risk, and costs of risk mitigation practices for peanut in Argentina, Ghana, India, Malawi, and North Carolina (NC) in the United States (US). Depending on pests and resources available to manage pests, risk tools vary considerably, especially in the context of other crops that are grown in sequence with peanut, cultivars, and chemical inputs. In Argentina, India, and the US where more tools (e.g., mechanization and pesticides) are available, risk indices for a wide array of economically important pests were developed with the assumption that reducing risk to those pests likely will impact peanut yield in a positive manner. In Ghana and Malawi where fewer management tools are available, risks to yield and aflatoxin contamination are presented without risk indices for individual pests. The Microsoft Excel platform can be updated as new and additional information on effectiveness of management practices becomes apparent. Tools can be developed using this platform that are appropriate for their geography, environment, cropping systems, and pest complexes and management inputs that are available. In this article we present examples for the risk tool for each country.
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使用Microsoft Excel为五个国家开发的花生害虫风险工具示例
将害虫种群抑制在经济破坏水平以下是可持续花生生产的一个重要因素。花生种植者和他们的顾问经常以类似的目标来管理害虫,无论他们位于哪里。利用田间历史预测害虫爆发和监测害虫种群是保护产量和财政投资的基础。在阿根廷、加纳、印度、马拉维和美国北卡罗来纳州,Microsoft Excel被用于开发害虫的个体风险指数、风险的综合评估以及风险缓解措施的成本。根据害虫和可用于管理害虫的资源,风险工具差异很大,尤其是在其他与花生、品种和化学物质按顺序种植的作物的情况下。在阿根廷、印度和美国,有更多的工具(如机械化和杀虫剂)可用,制定了一系列具有重要经济意义的害虫的风险指数,假设降低这些害虫的风险可能会对花生产量产生积极影响。在加纳和马拉维,可用的管理工具较少,产量和黄曲霉毒素污染的风险没有针对个别害虫的风险指数。随着有关管理实践有效性的新信息和附加信息变得明显,Microsoft Excel平台可以进行更新。可以使用该平台开发适合其地理、环境、种植系统、有害生物综合体和可用管理输入的工具。在本文中,我们为每个国家提供了风险工具的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Integrated Pest Management
Journal of Integrated Pest Management Agricultural and Biological Sciences-Insect Science
CiteScore
5.80
自引率
3.60%
发文量
24
审稿时长
25 weeks
期刊介绍: Journal of Integrated Pest Management is an open access, peer-reviewed, extension journal covering the field of integrated pest management. The Editors-in-Chief are Dr. Marlin E. Rice (formerly with Iowa State University) and Dr. Kevin L. Steffey (formerly with the University of Illinois). The journal is multi-disciplinary in scope, publishing articles in all pest management disciplines, including entomology, nematology, plant pathology, weed science, and other subject areas.
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