首页> 美国卫生研究院文献>other >NlCYP4G76 and NlCYP4G115 Modulate Susceptibility to Desiccation and Insecticide Penetration Through Affecting Cuticular Hydrocarbon Biosynthesis in Nilaparvata lugens (Hemiptera: Delphacidae)
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NlCYP4G76 and NlCYP4G115 Modulate Susceptibility to Desiccation and Insecticide Penetration Through Affecting Cuticular Hydrocarbon Biosynthesis in Nilaparvata lugens (Hemiptera: Delphacidae)

机译:NlCYP4G76和NlCYP4G115通过影响黄褐藻的表皮碳氢化合物生物合成来调节干燥和杀虫剂穿透的敏感性。

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摘要

The functions of cuticular hydrocarbons (CHCs) are varied in insects, but one example is to reduce water loss. Previous work has suggested that biosynthesis of CHCs is strongly related to the CYP4G sub-family. Targeting these genes in the brown planthopper, Nilaparvata lugens Stål, might be a new application for integrated pest management. Therefore, we explored the functions of CYP4G76 (GenBank: ) and CYP4G115 (GenBank: ) genes in this study. The desiccation treatment (RH < 5%) for the duration of 1–3 days significantly increased the transcription level of CYP4G76 and CYP4G115. RNAi through the injection of CYP4G76 and CYP4G115 dsRNA could significantly decrease their expression, respectively, and further reduced the biosynthesis of CHCs, i.e., saturated and straight-chain alkanes. When CYP4G76 and CYP4G115 were suppressed, the susceptibility of N. lugens nymphs to desiccation increased, due to the deficiency of the CHCs in the insect’s cuticle. When the expression of CYP4G76 and CYP4G115 was decreased, this resulted in an increased rate of penetration of the four insecticides: pymetrozine, imidacloprid, thiamethoxam and buprofezin. Therefore, CYP4G76 and CYP4G115 appear to regulate the biosynthesis of CHCs in N. lugens nymphs, which play a major role in protecting insects from water loss and the penetration of insecticides. CYP4G76 and CYP4G115 might be used as a novel target in integrated pest management to N. lugens.
机译:昆虫中的表皮碳氢化合物(CHC)的功能各不相同,但其中一个例子是减少水分流失。先前的工作表明,CHCs的生物合成与CYP4G亚家族密切相关。针对褐飞虱Nilaparvata lugensStål中的这些基因,可能是病虫害综合治理的新应用。因此,在这项研究中,我们探索了CYP4G76(GenBank:)和CYP4G115(GenBank:)基因的功能。持续1-3天的干燥处理(RH <5%)显着增加了CYP4G76和CYP4G115的转录水平。通过注入CYP4G76和CYP4G115 dsRNA的RNAi可以分别显着降低它们的表达,并进一步减少CHC的生物合成,即饱和和直链烷烃。当CYP4G76和CYP4G115被抑制时,由于昆虫表皮中CHC的缺乏,N。lugens若虫对干燥的敏感性增加。当CYP4G76和CYP4G115的表达降低时,这导致四种杀虫剂:pymetrozine,吡虫啉,噻虫嗪和buprofezin的渗透率增加。因此,CYP4G76和CYP4G115似乎在调节褐飞虱若虫中CHC的生物合成,在保护昆虫免受水分流失和杀虫剂渗透方面起着重要作用。 CYP4G76和 CYP4G115 可能被用作针对 N的病虫害综合治理的新目标。发光的。

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