首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Division of labor and structural plasticity in an extrinsic serotonergic mushroom body neuron in the ant Pheidole dentata.
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Division of labor and structural plasticity in an extrinsic serotonergic mushroom body neuron in the ant Pheidole dentata.

机译:蚂蚁Pheidole Dentata中的外在血清on蘑菇型神经元的劳动和结构可塑性分工。

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摘要

Worker polyphenisms in ants enable insightful analyses of neuronal underpinnings of division of labor, a crucial aspect of animal social organization. In the ant Pheidole dentata, which has a dimorphic worker caste, serotonin titer increases in the brain with age, modulating pheromonal recruitment communication and foraging, behaviors characteristic of mature individuals. Serotonin-immunoreactive (5HT-IR) neurons are found in the mushroom bodies (MB) and may modulate multi-sensory information processing associated with cues and social signals guiding task performance. The volume of this neuropil correlates with worker subcaste and age in P. dentata, but the role of structural variation in individual extrinsic MB neurons in division of labor in ants is poorly understood. We tested the hypothesis that branching complexity in a 5HT-IR calyx input neuron (CIN) in the MBs increases with age in minor workers of P. dentata in association with task repertoire expansion. We further predicted that major workers, which are defense specialists, have less elaborate CIN axonal arbors at any age in comparison to minor workers, which are task generalists. Contrary to our predictions, immunohistochemical and morphometric analyses revealed significantly greater CIN branching in both newly eclosed and mature major workers, and identified an effect of worker age on branching complexity only in majors. Our results indicate a modulatory role of the CIN in subcaste-specific behaviors and suggest behavioral specialization may be associated with the elaboration of specific MB neurons.
机译:在蚂蚁工作者polyphenisms使分工,动物社会组织的一个关键方面的神经基础的精辟分析。在蚂蚁齿状大头蚁,其中有一个二型工人等级,血清素与年龄脑滴度升高,调节费洛蒙招聘通信和觅食,行为成熟个体的特征。血清素 - 免疫反应性(5HT-IR)神经元中的蘑菇体(MB)的结果,可能调节与线索和社会信号引导任务性能相关联的多感官的信息处理。与工人subcaste和年龄在齿状P.这个相关因素的神经纤维的体积,而是结构性变化的个别外在MB神经元在蚂蚁的角色分工是知之甚少。我们测试了在5HT-IR萼输入神经元(CIN)在MBS随着年龄增大在齿状体育的未成年工在任务剧目扩大协会的分支复杂的假设。我们进一步预测,主要工作人员,这是防守专家,有在任何年龄不太精细的CIN轴突乔木相比,未成年工,这是任务的多面手。相反,我们的预测,免疫组织化学和形态分析显著更大的CIN揭示了两种新eclosed和成熟的主要分支的工人,并确定只在专业分支复杂工人年龄的效果。我们的研究结果表明CIN的具体subcaste-行为调节作用,并提出专业化的行为可能与特定的神经元MB的制定有关。

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