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Studies on Insecticidal Activities and Action Mechanism of Novel Benzoylphenylurea Candidate NK-17

机译:新型苯甲酰基苯基脲候选NK-17的杀虫活性及作用机理研究

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摘要

Insecticidal activity of >NK-17 was evaluated both in laboratory and in field. It was found that the toxicity of >NK-17 against S. exigua was 1.93 times and 2.69 times those of hexaflumuron and chlorfluazuron respectively, and the toxicity of >NK-17 against P. xylostella was 1.36 times and 1.90 times those of hexaflumuron and chlorfluazuron respectively, and the toxicity of >NK-17 against M. separate was 18.24 times those of hexaflumuron in laboratory, and 5% >NK-17 EC at 60 g a.i ha−1 can control S. exigua and P. xylostella with the best control efficiency of about 89% and over 88% respectively in Changsha and Tianjin in field. The insecticidal mechanism of >NK-17 was explored for the first time by utilizing the fluorescence polarization method. >NK-17 could bind to sulfonylurea receptor (SUR) of B. germanica with stronger affinity comparing to diflubenzuron and glibenclamide, which suggested that >NK-17 may also act on the site of SUR to inhibit the chitin synthesis in insect body and the result can well explain that >NK-17 exhibited stronger toxicity against B. germanica than diflubenzuron and glibenclamide in vivo.
机译:在实验室和现场均对> NK-17 的杀虫活性进行了评估。结果表明,> NK-17 对S. exigua的毒性分别是六氟仑和氯氟嘧隆的1.93倍和2.69倍,而> NK-17 对P的毒性是.xylostella分别是hexaflumuron和chlorfluazuron的1.36倍和1.90倍,> NK-17 对分离株的毒性是实验室中fluflumuron的18.24倍和5%> NK-在长沙和天津田间,以60 g ai ha -1 的17 EC可以控制exigua和Xylostella的最佳控制效率,分别为89%和88%以上。利用荧光偏振法首次探讨了> NK-17 的杀虫机理。 > NK-17 可以与德国双歧杆菌的磺酰脲受体(SUR)结合,与地氟苯隆和格列本脲相比具有更强的亲和力,这表明> NK-17 也可能在该部位起作用SUR抑制昆虫体内几丁质的合成,结果可以很好地说明> NK-17 在体内对德国芽孢杆菌的毒性要大于地氟苯隆和格列本脲。

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