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Antagonism of pheromone response of Ostrinia nubilalis males and implications on behavior in the laboratory and in the field

机译:牡蛎骨Ost信息素反应的拮抗作用及其对实验室和田间行为的影响

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The antagonistic effect on the pheromone response and catabolism of male European corn borers, Ostrinia nubilatis, by several trifluoromethyl ketones is reported. (Z)-11-Tetradecenyl trifluoromethyl ketone (Z11-14:TFMK), the most closely related analogue of the main component of the pheromone, elicits a remarkable disruptive effect on close approach and source contact of males flying to a source baited with mixtures of the pheromone and the antagonist in 5:1 and 10:1 ratios. In this experiment, the male displayed an erratic flight track with frequent counter turns and intersections with the plume. In the field, the TFMK significantly lowered the number of males caught when mixed with the pheromone in a 10:1 ratio in comparison with the natural attractant. The compound was also a good inhibitor of the antennal esterase of the insect with a IC50 value of 0.28 muM. The homologous (Z)-10-tridecenyl trifluoromethyl ketone, with one carbon less in the chain, also elicited an antagonistic effect in the wind tunnel, but in the field, the results were not conclusive. The effect induced was lower than the one displayed by Z11-14:TFMK including the activity as the esterase inhibitor (IC50 value of 7.55 muM). The saturated tetradecyl trifluoromethyl ketone, tetradecyltrifluoropyruvamide, and (Z)-11-2-thiatetradecenyl trifluoromethyl ketone resulted completely inactive. The results obtained in conjunction to the previously shown low toxicity to mice by related trifluoromethyl ketones provide new important data for the putative utilization of these chemicals as new pest control agents.
机译:报道了几种三氟甲基酮对欧洲欧洲玉米bore的信息素反应和分解代谢的拮抗作用。 (Z)-11-四氢噻吩基三氟甲基酮(Z11-14:TFMK)是信息素主要成分的最密切相关的类似物,对雄性飞翔至接近诱饵的雄性的近距离接触和源接触产生了显着破坏作用。信息素和拮抗剂的比例为5:1和10:1。在该实验中,雄性显示出不稳定的飞行轨迹,频繁逆转并与羽流相交。在田间,与天然引诱剂相比,TFMK以10:1的比例与信息素混合时,可显着降低捕获的雄性数量。该化合物还是昆虫触角酯酶的良好抑制剂,IC50值为0.28μM。链中碳原子少的同源(Z)-10-十三碳烯基三氟甲基酮在风洞中也引起拮抗作用,但在野外,结果尚无定论。诱导的作用低于Z11-14:TFMK所显示的作用,其中包括作为酯酶抑制剂的活性(IC50值为7.55μM)。饱和的十四烷基三氟甲基酮,十四烷基三氟丙酮酰胺和(Z)-11-2-噻吩十四烯基三氟甲基酮导致完全失活。与先前显示的有关三氟甲基酮对小鼠的低毒性相结合而获得的结果,为推定将这些化学品用作新的害虫防治剂提供了重要的新数据。

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