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Activity-Dependent Changes to the Brain and Behavior of the Honey Bee Apis mellifera (L.)

机译:蜜蜂蜜蜂和蜜蜂的大脑活动和行为依赖性变化

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摘要

To explore the origins and possible behavioral consequences of structural plasticity in an insect brain, we have taken advantage of the following: (1) the highly compartmentalized nature of the primary antenno-sensory centers (antennal lobes) of the brain, (2) the ease with which individual compartments, or glomeruli, within the antennal-lobe neuropil can be identified, and (3) the predictability of changes to readily identifiable glomeruli in the antennal lobes of the adult worker honey bee. Treatment with the juvenile hormone analog methoprene and hive manipulation techniques are used to induce precocious foraging behavior in young worker honey bees. The impact of these treatments on the ontogeny of olfactory learning performance and on the volumes of readily identifiable glomeruli in the antennal lobes of the bee brain are examined in parallel. The study reveals that (1) significant changes in glomerular volume are activity dependent and (2) associative learning of floral odors improves with experience. Improvements in associative learning performance coincide temporally with increases in glomerular volume. This raises an important question: are changes in glomerular volume that result from shifts in behavior simply a consequence of changes in the use of peripheral sensory pathways, or are they associated with events that underlie learning and the formation of long-term memories?
机译:为了探索昆虫大脑中结构可塑性的起源和可能的行为后果,我们利用了以下优势:(1)大脑主要的触觉感觉中枢(耳垂)的高度分隔性质,(2)容易识别触角叶神经纤维内的个别区室或肾小球,以及(3)成年工蜂的触角叶中易于识别的肾小球变化的可预测性。幼年激素类似物甲基戊二烯和蜂巢操纵技术的处理被用于诱导年轻工蜂的早熟觅食行为。平行检查这些治疗方法对嗅觉学习表现的个体发育以及对蜜蜂大脑触角中易于识别的肾小球体积的影响。该研究表明,(1)肾小球体积的显着变化与活动有关,(2)花香的联想学习随经验而改善。联想学习性能的改善在时间上与肾小球体积的增加相吻合。这就提出了一个重要的问题:行为改变引起的肾小球体积变化仅仅是周围感觉通路使用变化的结果,还是与学习和长期记忆形成的事件有关?

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