诱光器系统在水稻害虫褐飞虱监测中的应用评价

Mohammad aufa Mhd bookeri, Mohd fitri Masaruddin, Nuraini Ahmad arif shah, A. Mohd noh, Nurul syakira Samsuri, B. A. Abu Bakar, M. Khadzir
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引用次数: 2

摘要

褐飞虱(Nilaparvata lugens)是马来西亚主要的水稻害虫。1991年、1909年、2011年和2015年发生了一系列疫情,造成了严重的产量损失。诱光器现在常用来监测害虫的数量,以预测虫害的爆发。在特定的采样点和区域,根据作物生育期进行群体抽样。它是通过现场观察手工完成的,使用网、扫、板敲击或调查巡逻。这些方法既费力又费时。马来西亚农业研究与发展研究所(MARDI)开发了一个监测褐飞虱的预警系统,该系统由模块化光阱和一个天气数据库组成,以提供更早的预报和更有效的疫情预测。然而,关于光诱器在野外捕获和诱捕昆虫的效果如何,并没有太多的信息。光阱的效率取决于几个因素,如阱设计、光源类型、持续时间和采样时间;都会影响陷阱的效果。选择了30W紧凑型荧光灯(CFL),并用于构建四个可操作的光阱,并将其放置在适当的选定位置。在整个种植季节(15周),取样工作每周进行两次,每晚3小时。通过对比统计分析,评价诱光器与空中网法的有效性。结果表明,诱灯法与架空网法的差异有统计学意义,差异值为0.0167,p <0.05。因此,采用新设计的诱光器可以更有效地监测褐飞虱种群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Light Trap System in Monitoring of Rice Pests, Brown Planthopper (Nilaparvata lugens)
Brown Planthopper (Nilaparvata lugens) is a major rice pest insect in Malaysia. Series of the outbreak has been recorded in 1991, 1909, 2011, and 2015 which caused heavy yield losses. The light trap is now commonly used to monitor the pest population to predict the outbreak. The population sampling was conducted based on the crop stage at a specific sampling point and area. It has been done manually through field observations using netting, sweeping, board tapping, or survey patrol. Those methods are laborious and time-consuming. Malaysia Agriculture Research and Development Institute (MARDI) has developed an early warning system for brown planthopper monitoring consisting of modular light traps and a weather database to provide earlier forecasts and more effective outbreak prediction. However, there is not much information about how effective the light trap operated in the open field to draw and trap the insects. The light trap's efficiency depends on a few factors like the trap design, type of light source, duration, and sampling time; all affect the trap's effectiveness. A 30W Compact fluorescence light (CFL) has been selected and used to build four operated light traps and placed at the appropriate selected location. Sampling works were conducted twice a week for three hours per night throughout the planting season (15 weeks). Comparative statistical analysis was conducted to evaluate the effectiveness of the light trap compared to the aerial netting method. The results showed that the difference is statistically significant between light trap and aerial netting with a value of 0.0167 at p <0.05. Therefore, brown planthopper population monitoring is more effectively done using the new design light trap.
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