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首页> 外文期刊>Insectes Sociaux: Bulletin de l'Union Internationale pour l'Etude des Insectes Sociaux >Alkylpyrazines: alarm pheromone components of the little fire ant, Wasmannia auropunctata (Roger) (Hymenoptera, Formicidae)
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Alkylpyrazines: alarm pheromone components of the little fire ant, Wasmannia auropunctata (Roger) (Hymenoptera, Formicidae)

机译:烷基吡嗪类:小火蚁的警告信息素成分,Wasmannia auropunctata(Roger)(膜翅目,For科)

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摘要

The previous identification of 2,5-dimethyl-3-(3-methylbutyl)pyrazine as the mandibular alarm pheromone of the little fire ant Wasmannia auropunctata (Roger), has been found to be incorrect. Gas chromatography-mass spectrometry (GC/MS) of ant extracts suggested the correct structure to be the regioisomer 2,5-dimethyl-3-(2-methylbutyl)pyrazine, which was confirmed by comparison with the synthetic pyrazine. GC/MS analysis also revealed the presence of an additional disubstituted alkylpyrazine which was identified as 3-methyl-2-(2-methylbutyl)pyrazine. Headspace sampling of confined ants with SPME and Porapak Q followed by GC/MS analysis showed 2,5-dimethyl-3-(2-methylbutyl)pyrazine as the major volatile released by W. auropunctata workers while 3-methyl-2-(2-methylbutyl)pyrazine was only detected in trace amounts. In laboratory bioassays, W. auropunctata workers were attracted and arrested by both pyrazines, although the results were not always consistent. Synthetic pyrazines generally attracted as many W. auropunctata workers as were attracted to a single crushed ant. However, higher numbers of W. auropunctata were arrested by crushed ant treatments than by synthetic pyrazines in all bioassays but one.
机译:先前发现2,5-二甲基-3-(3-甲基丁基)吡嗪是小火蚁Wasmannia auropunctata(Roger)的下颌警报信息素,但发现是不正确的。蚂蚁提取物的气相色谱-质谱(GC / MS)表明,正确的结构为区域异构体2,5-二甲基-3-(2-甲基丁基)吡嗪,与合成吡嗪比较证实。 GC / MS分析还显示存在另外的二取代的烷基吡嗪,其被鉴定为3-甲基-2-(2-甲基丁基)吡嗪。用SPME和Porapak Q进行顶空进样的采样,然后进行GC / MS分析,表明2,5-二甲基-3-(2-甲基丁基)吡嗪是W. auropunctata工人释放的主要挥发物,而3-甲基-2-(2 -甲基丁基)吡嗪仅检测到痕量。在实验室生物测定中,W。auropunctata工人被两种吡嗪所吸引和逮捕,尽管结果并不总是一致的。合成吡嗪通常吸引与单一破碎蚂蚁一样多的W. auropunctata工人。但是,除一种方法外,在所有生物测定中,与其他合成吡嗪相比,通过压碎蚂蚁处理能捕获更多数量的W. auropunctata。

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