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首页> 外文期刊>Journal of Economic Entomology >Differential resistance and cross-resistance to three phenylpyrazole insecticides in the planthopper nilaparvata lugens (Hemiptera: Delphacidae)
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Differential resistance and cross-resistance to three phenylpyrazole insecticides in the planthopper nilaparvata lugens (Hemiptera: Delphacidae)

机译:褐飞虱对三种苯基吡唑类农药的抗性和交叉抗性(半翅目:Delphacidae)

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摘要

Cross-resistance to two fipronil analogs, butene-fipronil and ethiprole, was detected in fipronil-resistant field populations and a resistant laboratory strain of the planthopper Nilaparvata lugens (St?l) (Hemiptera: Delphacidae), although the two analogs have not been used widely in rice-growing areas in China. The results showed that six field populations with 23.8-43.3-fold resistance to fipronil had reached a higher level of cross-resistance to ethiprole (resistance ratio [RR] = 47.1-100.9-fold) and had a minor level of cross-resistance (RR = 3.4-8.1-fold) to butene-fipronil. After 10 generations of selection, the RR to fipronil increased from 7.3-fold to 41.3-fold. At the same time, the insect increased cross-RR to ethiprole from 16.3-fold to 65.6-fold, whereas it had only minor increase in cross-resistance to butene-fipronil from 2.8-fold to 4.0-fold. These results confirmed that fipronil-resistant N. lugens could develop a higher level of cross-resistance to ethiprole, although it still maintained a lower level cross-resistance to butene-fipronil. Our data suggest that ethiprole is not a suitable alternative for controlling N. lugens, once the insect has developed a high level resistance to fipronil. Further investigation is necessary to understand the cross-resistance mechanisms in N. lugens.
机译:在耐氟虫腈的田间种群和飞虱Nilaparvata lugens(St?l)(半翅目:Delphacidae)的耐药实验室菌株中检测到对两种氟虫腈类似物的交叉耐药性。在中国水稻种植地区广泛使用。结果表明,对氟虫腈具有23.8-43.3倍抗性的6个田间种群对乙腈的交叉抗性水平较高(电阻比[RR] = 47.1-100.9倍),而交叉抗性水平较小( RR = 3.4-8.1倍)至丁烯-氟吡尼。选择10代后,氟虫腈的RR从7.3倍增加到41.3倍。同时,该昆虫与乙丙腈的交叉抗性从16.3倍增加到65.6倍,而对丁烯-氟苯腈的交叉抗性仅从2.8倍增加到4.0倍。这些结果证实,尽管对氟虫腈具有抗丁苯丙胺的交叉抗性,但耐氟虫腈的N. lugens可以产生较高的对乙腈的交叉抗性。我们的数据表明,一旦昆虫对氟虫腈产生了高水平的抗性,乙虫胺不是控制褐飞虱的合适替代品。有必要进行进一步的研究以了解黄褐猪笼草的交叉耐药机制。

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