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蜜蜂(Apis mellifera L.)中作为气味生物价值函数的天线运动。

Antenna movements as a function of odorants' biological value in honeybees (Apis mellifera L.).

机构信息

Evolution, Genomes, Behavior and Ecology, Université Paris-Saclay, CNRS, IRD, 91198, Gif-sur-Yvette, France.

Department of Ecology, Evolution, and Behavior, The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, 91904, Jerusalem, Israel.

出版信息

Sci Rep. 2022 Jul 8;12(1):11674. doi: 10.1038/s41598-022-14354-z.

Abstract

In honeybees, the antennae are highly mobile sensory organs that express scanning movements in various behavioral contexts and toward many stimuli, especially odorants. The rules underlying these movements are still unclear. Using a motion-capture system, we analyzed bees' antennal responses to a panel of pheromonal and other biologically relevant odorants. We observed clear differences in bees' antennal responses, with opposite movements to stimuli related to opposite contexts: slow backward movements were expressed in response to alarm pheromones, while fast forward movements were elicited by food related cues as well as brood and queen related pheromones. These responses are reproducible, as a similar pattern of odor-specific responses was observed in bees from different colonies, on different years. We then tested whether odorants' attractiveness for bees, measured using an original olfactory orientation setup, may predict antenna movements. This simple measure of odorants' valence did however not correlate with either antennal position or velocity measures, showing that more complex rules than simple hedonics underlie bees' antennal responses to odorants. Lastly, we show that newly-emerged bees express only limited antennal responses compared to older bees, suggesting that a significant part of the observed responses are acquired during bees' behavioral development.

摘要

在蜜蜂中,触角是高度灵活的感觉器官,在各种行为情境下和对许多刺激物,特别是气味物质,表现出扫描运动。这些运动的规则仍然不清楚。使用运动捕捉系统,我们分析了蜜蜂对一系列信息素和其他生物相关气味物质的触角反应。我们观察到蜜蜂触角反应的明显差异,与相反的背景相关的刺激物有相反的运动:警报信息素引起缓慢的向后运动,而与食物相关的线索以及幼虫和蜂王相关的信息素则引起快速的向前运动。这些反应是可重现的,因为在不同年份、来自不同蜂群的蜜蜂中观察到了类似的气味特异性反应模式。然后,我们测试了使用原始嗅觉定向装置测量的蜜蜂对气味物质的吸引力是否可以预测触角运动。然而,这种气味物质效价的简单测量与触角位置或速度测量均不相关,表明蜜蜂对气味物质的触角反应遵循比简单享乐主义更复杂的规则。最后,我们发现与年长的蜜蜂相比,新出现的蜜蜂的触角反应非常有限,这表明观察到的反应很大一部分是在蜜蜂的行为发育过程中获得的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/467e/9270438/8a985b449436/41598_2022_14354_Fig1_HTML.jpg

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