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蜜蜂中味觉中枢投射与操作性触角肌条件反射的侧别特异性

Central gustatory projections and side-specificity of operant antennal muscle conditioning in the honeybee.

作者信息

Haupt S Shuichi

机构信息

Neurobiologie, Institut für Okologie, TU Berlin FR1-1, Franklinstr. 28/9, 10587, Berlin, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 May;193(5):523-35. doi: 10.1007/s00359-007-0208-z. Epub 2007 Jan 31.

Abstract

Gustatory stimuli to the antennae, especially sucrose, are important for bees and are employed in learning paradigms as unconditioned stimulus. The present study identified primary antennal gustatory projections in the bee brain and determined the impact of stimulation of the antennal tip on antennal muscle activity and its plasticity. Central projections of antennal taste hairs contained axons of two morphologies projecting into the dorsal lobe, which is also the antennal motor centre. Putative mechanosensory axons arborised in a dorso-lateral area. Putative gustatory axons projected to a ventro-medial area. Bees scan gustatory and mechanical stimuli with their antennae using variable strategies but sensory input to the motor system has not been investigated in detail. Mechanical, gustatory, and electrical stimulation of the ipsilateral antennal tip were found to evoke short-latency responses in an antennal muscle, the fast flagellum flexor. Contralateral gustatory stimulation induced smaller responses with longer latency. The activity of the fast flagellum flexor was conditioned operantly by pairing high muscle activity with ipsilateral antennal sucrose stimulation. A proboscis reward was unnecessary for learning. With contralateral antennal sucrose stimulation, conditioning was unsuccessful. Thus, muscle activity induced by gustatory stimulation was important for learning success and conditioning was side-specific.

摘要

对蜜蜂触角的味觉刺激,尤其是蔗糖刺激,非常重要,并且在学习范式中被用作非条件刺激。本研究确定了蜜蜂大脑中触角的主要味觉投射,并确定了刺激触角尖端对触角肌肉活动及其可塑性的影响。触角味觉毛的中枢投射包含两种形态的轴突,它们投射到背叶,背叶也是触角运动中心。假定的机械感觉轴突在背外侧区域形成分支。假定的味觉轴突投射到腹内侧区域。蜜蜂使用多种不同策略用触角扫描味觉和机械刺激,但尚未对运动系统的感觉输入进行详细研究。发现对同侧触角尖端进行机械、味觉和电刺激会在触角肌肉(快速鞭毛屈肌)中引发短潜伏期反应。对侧味觉刺激诱发的反应较小,潜伏期较长。通过将高肌肉活动与同侧触角蔗糖刺激配对,快速鞭毛屈肌的活动可通过操作性条件反射进行调节。学习过程中不需要喙部奖励。对侧触角蔗糖刺激时,条件反射不成功。因此,味觉刺激诱导的肌肉活动对学习成功很重要,并且条件反射具有侧别特异性。

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