Resistance Monitoring of Nilaparvata lugens Stall against Pymetrozine Insecticide with Determination of Diagnostic Concentrations

S. Murtiati, U. Tarwotjo, R. Rahadian
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引用次数: 0

Abstract

Nilaparvata lugens Stall is one of the main insect pests on rice crops. Intensive control of this pests using insecticides has resulted in the development of insect resistance. This study aimed to find out the level of resistance of the N. lugens population to pymetrozine insecticides by determining the diagnostic concertations. N. lugens was collected from five endemic areas in Central Java Province from October 2019 to June 2020. The data from the bioassay test were analyzed with probit analysis to obtain the LC50 value. The results of the sensitivity test showed that the Kajen population has the highest RF value (2.47), while the Karanganyar population which has the lowest RF value (1) was the most sensitive population. The determined diagnostic concentration was LC95 = 25.52 ppm with the lowest concentration limit of 7.67 ppm and the highest of 30.05 ppm. To conclude, the determined diagnostic concentration (LC95 = 25.52 ppm) is effective for detecting the susceptibililty of N. lugens population. This finding would be beneficial for monitoring resistance of N. lugens population against pymetrozine insecticides in the field.
褐褐褐蝇对吡蚜酮的抗药性监测及诊断浓度测定
褐飞虱是水稻作物的主要害虫之一。使用杀虫剂对这种害虫进行强化控制已导致昆虫产生抗药性。本研究旨在通过测定诊断浓度,了解褐胸小蠊种群对吡蚜酮类杀虫剂的抗性水平。2019年10月至2020年6月,在中爪哇省的5个流行区采集了吕根奈瑟菌。采用probit分析法对生物测定试验数据进行分析,得到LC50值。敏感性试验结果表明,卡仁种群的RF值最高(2.47),卡兰甘雅尔种群的RF值最低(1),最敏感。诊断浓度LC95 = 25.52 ppm,最低浓度限7.67 ppm,最高浓度限30.05 ppm。综上所示,LC95 = 25.52 ppm的诊断浓度可有效地检测出病原菌的敏感性。这一发现将有利于田间监测绿足螨种群对吡蚜酮类杀虫剂的抗性。
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
13
审稿时长
16 weeks
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