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蜜蜂蕈形体唇中微肾小球复合体对行为成熟和感官体验操纵的适应性

Adaptation of microglomerular complexes in the honeybee mushroom body lip to manipulations of behavioral maturation and sensory experience.

作者信息

Krofczik Sabine, Khojasteh Uldus, de Ibarra Natalie Hempel, Menzel Randolf

机构信息

Institut für Biologie - Neurobiologie, Freie Universität Berlin, Königin-Luise Str. 28-30, 14195 Berlin, Germany.

出版信息

Dev Neurobiol. 2008 Jul;68(8):1007-17. doi: 10.1002/dneu.20640.

Abstract

Worker honeybees proceed through a sequence of tasks, passing from hive and guard duties to foraging activities. The underlying neuronal changes accompanying and possibly mediating these behavioral transitions are not well understood. We studied changes in the microglomerular organization of the mushroom bodies, a brain region involved in sensory integration, learning, and memory, during adult maturation. We visualized the MB lips' microglomerular organization by applying double labeling of presynaptic projection neuron boutons and postsynaptic Kenyon cell spines, which form microglomerular complexes. Their number and density, as well as the bouton volume, were measured using 3D-based techniques. Our results show that the number of microglomerular complexes and the bouton volumes increased during maturation, independent of environmental conditions. In contrast, manipulations of behavior and sensory experience caused a decrease in the number of microglomerular complexes, but an increase in bouton volume. This may indicate an outgrowth of synaptic connections within the MB lips during honeybee maturation. Moreover, manipulations of behavioral and sensory experience led to adaptive changes, which indicate that the microglomerular organization of the MB lips is not static and determined by maturation, but rather that their organization is plastic, enabling the brain to retain its synaptic efficacy.

摘要

工蜂会经历一系列任务,从蜂巢和守卫职责过渡到觅食活动。伴随并可能介导这些行为转变的潜在神经元变化尚未得到充分理解。我们研究了成年蜜蜂成熟过程中蘑菇体(一个参与感觉整合、学习和记忆的脑区)微球组织的变化。我们通过对形成微球复合体的突触前投射神经元终扣和突触后肯扬细胞棘进行双重标记,来观察蘑菇体唇叶的微球组织。使用基于三维的技术测量了它们的数量和密度,以及终扣体积。我们的结果表明,微球复合体的数量和终扣体积在成熟过程中增加,与环境条件无关。相反,行为和感觉经验的操控导致微球复合体数量减少,但终扣体积增加。这可能表明蜜蜂成熟过程中蘑菇体唇叶内突触连接的生长。此外,行为和感觉经验的操控导致了适应性变化,这表明蘑菇体唇叶的微球组织不是静态的,不由成熟决定,而是其组织具有可塑性,使大脑能够保持其突触效能。

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