首页> 外文期刊>Journal of Agricultural and Food Chemistry >Electroantennogram and Behavioral Responses of the Imported Fire Ant, Solenopsis invicta Buren, to an Alarm Pheromone Component and Its Analogues
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Electroantennogram and Behavioral Responses of the Imported Fire Ant, Solenopsis invicta Buren, to an Alarm Pheromone Component and Its Analogues

机译:进口火蚂蚁Sinoenopsis invicta Buren对报警信息素成分及其类似物的电造影和行为响应

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摘要

A characteristic behavior in ants is to move rapidly to emission sources of alarm pheromones. The addition of ant alarm pheromones to bait is expected to enhance its attractiveness. To search for candidate compounds for bait enhancement in fire ant control, 13 related alkylpyrazine analogues in addition to synthetic alarm pheromone component were evaluated for electroantennogram (EAG) and behavioral activities in Solenopsis invicta. Most compounds elicited dose-dependent EAG and behavioral responses. There exists a correlation between the EAG and behavioral responses. Among the 14 tested alkylpyrazines, three compounds, 2-ethyl-3,6(5)-dimethyl pyrazine (1), 2,3,5-trimethylpyrazine (7), and 2,3-diethyl-5-methylpyrazine (12), elicited significant alarm responses at a dose range of 0.1-1000 ng. Further bait discovery bioassay with the three most active alkylpyrazines demonstrated that food bait accompanied by sample-treated filter paper disk attracted significantly more fire ant workers in the first 15 min period. EAG and behavioral bioassays with pure pheromone isomers accumulated by semi-preparative high-performance liquid chromatography demonstrated that 2-ethyl-3,6-dimethylpyrazine was significantly more active than 2-ethyl-3,5-dimethylpyrazine.
机译:蚂蚁的一种典型行为是迅速移动到警报信息素的发射源。诱饵中添加蚂蚁警报信息素有望增强其吸引力。为了寻找在火蚁控制中增强诱饵的候选化合物,除了合成警报信息素成分外,还评估了13种相关烷基吡嗪类似物的电伏安图(EAG)和鼠尾草的行为活性。大多数化合物引起剂量依赖性EAG和行为反应。 EAG与行为反应之间存在相关性。在14种测试的烷基吡嗪中,三种化合物为2-乙基-3,6(5)-二甲基吡嗪(1),2,3,5-三甲基吡嗪(7)和2,3-二乙基-5-甲基吡嗪(12)在剂量范围为0.1-1000 ng时引起明显的警报响应。用三种活性最高的烷基吡嗪进行的进一步诱饵发现生物测定表明,在最初的15分钟内,食物诱饵与经过样品处理的滤纸碟片相结合后,引诱了更多的火蚁工人。 EAG和通过半制备型高效液相色谱积累的具有纯信息素异构体的行为生物分析表明,2-乙基-3,6-二甲基吡嗪比2-乙基-3,5-二甲基吡嗪具有更高的活性。

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