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寄生螨狄斯瓦螨会影响西方蜜蜂(Apis mellifera L.)工蜂的非联想学习能力。

The parasitic mite Varroa destructor affects non-associative learning in honey bee foragers, Apis mellifera L.

作者信息

Kralj Jasna, Brockmann Axel, Fuchs Stefan, Tautz Jürgen

机构信息

National Institute of Biology, Vecna pot 111, Ljubljana, Slovenia.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Mar;193(3):363-70. doi: 10.1007/s00359-006-0192-8. Epub 2006 Nov 23.

Abstract

The parasitic mite Varroa destructor influences flight behavior, orientation and returning success of forager honeybees (Apis mellifera) infested as adults. As impaired orientation toward the nest entrance might be due to deficiency in recognition and responsiveness to stimuli in the environment, we examined effects of V. destructor on sensory responsiveness, non-associative and associative learning of honey bee foragers by using proboscis extension reaction paradigm (PER). Although infested and uninfested workers were initially equally responsive to different concentrations of sugar water, we found differences in non-associative learning. In habituation, PER to repeated sugar stimulation of the antennae occurred faster in infested foragers compared to uninfested foragers. In sensitization, infested foragers showed a lower response to an odor stimulus following sugar stimulation than non-infested foragers. Differences in non-associative paradigms were more pronounced in bees with lower responsiveness to sucrose. In conditioning learning experiments, a significant reduction in proboscis extension response was found 1 min but not 12 min after a single conditioning trial indicating that V. destructor predominantly affects the non-associative components of learning and its underlying neural and molecular processes.

摘要

寄生螨狄斯瓦螨会影响成年后被感染的觅食蜜蜂(西方蜜蜂)的飞行行为、定向能力和归巢成功率。由于对蜂巢入口定向能力受损可能是由于对环境刺激的识别和反应能力不足,我们通过使用喙伸展反应范式(PER)研究了狄斯瓦螨对蜜蜂觅食者的感觉反应、非联想学习和联想学习的影响。虽然受感染和未受感染的工蜂最初对不同浓度的糖水反应相同,但我们发现了非联想学习方面的差异。在习惯化过程中,与未受感染的觅食者相比,受感染的觅食者对触角重复糖刺激的PER出现得更快。在敏感化过程中,受感染的觅食者在糖刺激后对气味刺激的反应比未受感染的觅食者低。在对蔗糖反应较低的蜜蜂中,非联想范式的差异更为明显。在条件学习实验中,单次条件试验后1分钟而非12分钟发现喙伸展反应显著降低,这表明狄斯瓦螨主要影响学习的非联想成分及其潜在的神经和分子过程。

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