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挥发性线索可以驱动蜻蜓目昆虫的产卵行为。

Volatile cues can drive the oviposition behavior in Odonata.

作者信息

Frati Francesca, Piersanti Silvana, Rebora Manuela, Salerno Gianandrea

机构信息

Dipartimento di Scienze Agrarie, Alimentari e Ambientali, University of Perugia, Italy.

Dipartimento di Chimica, Biologia e Biotecnologie, University of Perugia, Italy.

出版信息

J Insect Physiol. 2016 Aug-Sep;91-92:34-8. doi: 10.1016/j.jinsphys.2016.06.007. Epub 2016 Jun 24.

Abstract

Selection for the oviposition site represents the criterion for the behavioral process of habitat selection for the next generation. It is well known that in Odonata the most general cues are detected visually, but laboratory investigations on the coenagrionid Ischnura elegans showed through behavioral and electrophysiological assays that adults were attracted by olfactory cues emitted by prey and that males of the same species are attracted by female odor. The results of the present behavioral and electrophysiological investigations on I. elegans suggest the involvement of antennal olfactory sensilla in oviposition behavior. In particular, I. elegans females laid in the laboratory significantly more eggs in water from larval rearing aquaria than in distilled or tap water. Moreover, the lack of preference between rearing water and tap water with plankton suggests a role of volatiles related to conspecific and plankton presence in the oviposition site choice. I. elegans may rely on food odor for oviposition site selection, thus supporting the predictions of the "mother knows best" theory. These behavioral data are partially supported by electroantennographic responses. These findings confirm a possible role of olfaction in crucial aspects of Odonata biology.

摘要

选择产卵地点是为下一代进行栖息地选择行为过程的标准。众所周知,在蜻蜓目昆虫中,最常见的线索是通过视觉检测到的,但对豆娘科的艾氏异痣蟌进行的实验室研究通过行为和电生理分析表明,成虫会被猎物发出的嗅觉线索所吸引,且同一物种的雄性会被雌性气味所吸引。目前对艾氏异痣蟌进行的行为和电生理研究结果表明触角嗅觉感受器参与了产卵行为。特别是,在实验室中,艾氏异痣蟌的雌性在幼虫饲养水族箱的水中产下的卵明显多于蒸馏水中或自来水中的卵。此外,在饲养用水和含有浮游生物的自来水之间缺乏偏好,这表明与同种生物和浮游生物存在相关的挥发性物质在产卵地点选择中发挥了作用。艾氏异痣蟌可能依靠食物气味来选择产卵地点,从而支持了“母亲最了解情况”理论的预测。这些行为数据部分得到了触角电图反应的支持。这些发现证实了嗅觉在蜻蜓目生物学关键方面可能发挥的作用。

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