首页> 外文期刊>The Journal of Experimental Biology >Unusual response characteristics of pheromone-specific olfactory receptor neurons in the Asian corn borer moth, Ostrinia furnacalis.
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Unusual response characteristics of pheromone-specific olfactory receptor neurons in the Asian corn borer moth, Ostrinia furnacalis.

机译:亚洲玉米bore蛾Ostrinia furnacalis中信息素特异性嗅觉受体神经元的异常反应特征。

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摘要

Male moth pheromone-detecting receptor neurons are known to be highly specific and very sensitive. We investigated physiological and behavioral responses to female sex pheromone components in male Ostrinia furnacalis moths (Lepidoptera: Crambidae). Using recordings from a cut-sensillum technique, trichoid sensilla could be grouped into four physiological types (1-4), according to the response of receptor neurons to the two major pheromone components, (E)-12- and (Z)-12-tetradecenyl acetate (E12- and Z12-14:OAc). These types could subsequently be characterized as four subtypes (A-D) depending on neural responses to pheromone components from various sister species of O. furnacalis, (Z)-9-, (E)-11- and (Z)-11-tetradecenyl acetate. The peripheral pheromone detection system of O. furnacalis is different to that of other moths. A large majority of the neurons investigated responded to both of the two principal pheromone components. Dose-response and cross-adaptation studies showed that olfactory receptor neurons with large amplitude action potentials responded equally well to E12- and Z12-14:OAc in sensillum types 1-3. Field experiments showed that O. furnacalis males are sensitive to ratios of E12- and Z12-14:OAc and that (Z)-9-tetradecenyl acetate acts as a behavioral antagonist. O. furnacalis males thus display an unusual coding system for odors involved in sexual communication, mainly built on less specific neurons, but still have the ability to detect and respond to the correct female blend. We hypothesize that the pheromone detection system of O. furnacalis consists of two parts, where one is devoted to high sensitivity to Delta 12 isomers of tetradecenyl acetate, E12- and Z12-14:OAc and the other to highly specific responses to the E12- or Z12-14:OAc. The unusual feature is thus that a large part of the system is devoted to sensitivity and only a minor part to selectivity. This could be explained by the fact that no other moth species are known to use E12- and/or Z12-14:OAc and that no strong selective pressure to increase selectivity between the isomers has been determined..
机译:已知雄蛾检测信息素的受体神经元具有高度特异性且非常敏感。我们调查了对雄性Ostrinia furnacalis飞蛾(鳞翅目:Crombidae)中女性性信息素成分的生理和行为响应。根据来自受体神经元对两种主要信息素成分(E)-12-和(Z)-12的反应,使用切线切割技术的记录,可以将三脉毛线虫感器分为四种生理类型(1-4)。 -乙酸十四碳烯酯(E12-和Z12-14:OAc)。这些类型随后可被表征为四个亚型(AD),具体取决于对O. furnacalis的各种姐妹物种信息素成分的神经反应,乙酸(Z)-9-,(E)-11-和(Z)-11-十四碳烯基。糠O的外围信息素检测系统与其他蛾类不同。研究的绝大多数神经元对两种主要信息素成分都做出了反应。剂量反应和交叉适应性研究表明,在1-3型sensillum中,具有大幅度动作电位的嗅觉受体神经元对E12-和Z12-14:OAc的反应相同。野外实验表明,非洲香茅男性对E12-和Z12-14:OAc的比例敏感,并且(Z)-9-十四碳烯乙酸酯充当行为拮抗剂。因此,弗纳卡利斯猫(O. furnacalis)雄性对性交涉及的气味显示出不同寻常的编码系统,该系统主要建立在特异性较低的神经元上,但仍具有检测和响应正确雌性混合体的能力。我们假设弗纳卡利斯猫的信息素检测系统由两部分组成,其中一部分致力于对乙酸十四碳烯的Delta 12异构体,E12-和Z12-14:OAc的高敏感性,另一部分对对E12-或Z12-14:OAc。因此,不寻常的特征是系统的很大一部分致力于灵敏度,而只有很小一部分致力于选择性。这可以通过以下事实来解释:没有其他蛾类物种使用E12-和/​​或Z12-14:OAc,并且没有确定增加异构体之间选择性的强大选择压力。

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