首页> 外文期刊>Behavioural Brain Research: An International Journal >Behavioural and electrophysiological lateralization in a social (Apis mellifera) but not in a non-social (Osmia cornuta) species of bee.
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Behavioural and electrophysiological lateralization in a social (Apis mellifera) but not in a non-social (Osmia cornuta) species of bee.

机译:蜜蜂的社交(Apis mellifera)的行为和电生理侧化,但非社交(Osmia cornuta)物种则没有。

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Recent evidence suggests that asymmetry between the left and right sides of the brain is not limited to vertebrates but extends to invertebrates as well. We compared olfactory lateralization in two species of Hymenoptera Apoidea, the honeybee (Apis mellifera), a social species, and the mason bee (Osmia cornuta), a solitary species. Recall of the olfactory memory 1 h after training to associate an odour with a sugar reward, as revealed by the bee extending its proboscis when presented with the trained odour, was better in honeybees trained with their right than with their left antenna. No such asymmetry was observed in mason bees. Similarly, electroantennographic responses to a floral volatile compound and to an alarm pheromone component were higher in the right than in the left antenna in honeybees but not in mason bees. These findings seem to support recent game-theoretical models suggesting that population-level lateralization is more likely to have evolved in social than in non-social species.
机译:最新证据表明,大脑左右两侧之间的不对称不仅限于脊椎动物,而且还延伸至无脊椎动物。我们比较了膜翅目膜蝶属的两个物种,社会物种的蜜蜂(Apis mellifera)和孤独的梅森蜂(Osmia cornuta)的嗅觉偏侧化。训练后1小时将气味与糖奖励相关联的嗅觉记忆被召回,正如蜜蜂在接受训练后的气味时扩展其鼻长所揭示的那样,用右手训练的蜜蜂比用左手训练的蜜蜂更好。在梅森蜜蜂中没有观察到这种不对称性。同样,在蜜蜂中,对花香挥发性化合物和警报信息素成分的电性响应比在左天线中高,而在梅森蜂中则不高。这些发现似乎支持了最近的博弈论模型,表明在社会层面上,与非社会物种相比,人口层面的偏侧化更有可能发生。

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