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信息素调节蜜蜂的奖赏反应和非联想学习。

Pheromones modulate reward responsiveness and non-associative learning in honey bees.

机构信息

Research Centre on Animal Cognition, Center for Integrative Biology, CNRS, University of Toulouse, 118 route de Narbonne, F-31062, Toulouse Cedex 09, France.

Laboratory of Experimental and Comparative Ethology, University of Paris 13, Sorbonne Paris Cité, France.

出版信息

Sci Rep. 2017 Aug 29;7(1):9875. doi: 10.1038/s41598-017-10113-7.

Abstract

Pheromones are chemical messengers that trigger stereotyped behaviors and/or physiological processes in individuals of the same species. Recent reports suggest that pheromones can modulate behaviors not directly related to the pheromonal message itself and contribute, in this way, to behavioral plasticity. We tested this hypothesis by studying the effect of pheromones on sucrose responsiveness and habituation in honey bees. We exposed workers to three pheromone components: geraniol, which in nature is used in an appetitive context, and isopentyl acetate (IPA) and 2-heptanone (2H), which signal aversive situations. Pheromones associated with an aversive context induced a significant decrease of sucrose responsiveness as 40% and 60% of bees exposed to IPA and 2H, respectively, did not respond to any sucrose concentration. In bees that responded to sucrose, geraniol enhanced sucrose responsiveness while 2H, but not IPA, had the opposite effect. Geraniol and IPA had no effect on habituation while 2H induced faster habituation than controls. Overall, our results demonstrate that pheromones modulate reward responsiveness and to a lower degree habituation. Through their effect on sucrose responsiveness they could also affect appetitive associative learning. Thus, besides conveying stereotyped messages, pheromones may contribute to individual and colony-level plasticity by modulating motivational state and learning performances.

摘要

信息素是一种化学信使,它可以在同种个体中引发刻板的行为和/或生理过程。最近的报道表明,信息素可以调节与信息素本身不直接相关的行为,并以此方式促进行为可塑性。我们通过研究信息素对蜜蜂蔗糖反应性和习惯化的影响来验证这一假设。我们让工蜂接触三种信息素成分:香叶醇,它在自然界中用于开胃的情境,以及异戊酸乙酯(IPA)和 2-庚酮(2H),它们表示令人厌恶的情境。与厌恶情境相关的信息素诱导了蔗糖反应性的显著降低,分别有 40%和 60%接触 IPA 和 2H 的蜜蜂对任何蔗糖浓度都没有反应。在对蔗糖有反应的蜜蜂中,香叶醇增强了蔗糖反应性,而 2H 则有相反的效果。香叶醇和 IPA 对习惯化没有影响,而 2H 诱导的习惯化速度比对照组快。总的来说,我们的结果表明信息素可以调节奖励反应性,而对习惯化的影响较小。通过对蔗糖反应性的影响,它们还可能影响食欲联想学习。因此,除了传递刻板的信息外,信息素还可以通过调节动机状态和学习表现来促进个体和群体水平的可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ad1/5574997/48df21998fbf/41598_2017_10113_Fig1_HTML.jpg

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