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西方石蛾(Trichoptera:Limnephilidae):性信息素成分 6-甲基壬-3-酮的触角电位结构-活性研究。

Hesperophylax occidentalis (Trichoptera: Limnephilidae): Electroantennogram structure-activity study of sex pheromone component 6-methylnonan-3-one.

机构信息

Department of Entomology, Colorado State University, 80523, Fort Collins, Colorado.

出版信息

J Chem Ecol. 1996 Jan;22(1):123-37. doi: 10.1007/BF02040204.

Abstract

Electroantennogram (EAG) analyses ofHesperophylax occidentalis male and female antennae were used to generate dose-response curves for synthetic, racemic 6-methylnonan-3-one and to demonstrate the chemical specificity of male antennal olfactory cells. Male antennae responded to 6-methylnonan-3-one, the main female pheromone component. Females also demonstrated a response to 6-methylnonan-3-one, but a smaller one than males. The chemical specificity of male antennal receptors was determined by comparing EAG activity of synthetic, racemic 6-methylnonan-3-one and a series of structural analogs. The three structural parameters considered, including keto position, chain length, and methyl-group position, were demonstrated to contribute significantly to the reception of synthetic, racemic 6-methylnonan-3-one by male antennae. For straight-chain nonanones with keto groups at different positions, nonan-3-one elicited the greatest EAG responses from male antennae. For straight-chain alkan-3-ones with different chain lengths, the EAG responses of male antennae to nonan-3-one and decan-3-one were the same, but greater than those to other chain lengths. For methyl-branched nonan-3-ones, 6-methylnonan-3-one elicited greater EAG responses from antennae than analogs with the methyl group at another position.

摘要

用电生理触角反应(EAG)分析了华西雨蛙雌雄触角,生成了合成的、外消旋的 6-甲基壬-3-酮的剂量反应曲线,并证明了雄触角嗅觉细胞的化学特异性。雄触角对 6-甲基壬-3-酮(主要的雌信息素成分)有反应。雌触角也对 6-甲基壬-3-酮有反应,但比雄触角的反应小。通过比较合成的、外消旋的 6-甲基壬-3-酮和一系列结构类似物的 EAG 活性,确定了雄触角受体的化学特异性。所考虑的三个结构参数,包括酮位、链长和甲基位置,都显著影响了雄性触角对合成的、外消旋的 6-甲基壬-3-酮的接收。对于具有不同位置酮基的直链壬酮,壬-3-酮引起了雄触角最大的 EAG 反应。对于具有不同链长的直链烷-3-酮,雄触角对壬-3-酮和癸-3-酮的 EAG 反应相同,但大于对其他链长的反应。对于甲基支链壬-3-酮,6-甲基壬-3-酮引起的触角 EAG 反应大于甲基位于其他位置的类似物。

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