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Differences in sNPF Receptor-Expressing Neurons in Brains of Fire Ant (Solenopsis invicta Buren) Worker Subcastes: Indicators for Division of Labor and Nutritional Status?

机译:火蚁(Solenopsis invicta Buren)工人子脑中sNPF受体表达神经元的差异:分工和营养状况的指标?

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摘要

In the red imported fire ant, Solenopsis invicta Buren, the neuronal and molecular mechanisms related to worker division of labor are poorly understood. Workers from different subcastes (major, medium and minors) perform different tasks, which are loosely associated with their size. We hypothesized that the short neuropeptide F (sNPF) signaling system (NPY-like) could be involved in mechanisms of worker division of labor and sensing or responding to colony nutritional requirements. Thus, we investigated the expression of the short neuropeptide F receptor (sNPFR) in the brain and subesophageal ganglion (SEG) of workers from colonies with and without brood. Across worker subcastes a total of 9 clusters of immunoreactive sNPFR cells were localized in the brain and the subesophageal ganglion (SEG); some of these cells were similar to those observed previously in the queen. Worker brain sNPFR cell clusters were found in the protocerebrum near mushroom bodies, in the central complex and in the lateral horn. Other sNPFR immunoreactive cells were found at the edge of the antennal lobes. Across subcastes, we observed both a constant and a differential pattern of sNPFR clusters, with a higher number of sNPFR cells found in minor than in major workers. Those sNPFR cells detected in all worker subcastes appear to be involved in olfaction or SEG functions. The differential expression of clusters in subcastes suggests that sNPFR signaling is involved in regulating behaviors associated with specific subcastes and thus, division of labor. Some sNPFR cells appear to be involved in nutrient sensing and/or brood care, feeding behavior and locomotion. In colonies without brood, workers showed a lower cluster number, and an overall reduced sNPFR signal. Our results suggest the sNPF signaling system is a candidate for the neurobiological control of worker division of labor and sensing brood presence, perhaps correlating with protein requirements and availability.
机译:在红色火蚁蚁中,与工人分工有关的神经元和分子机制了解得很少。来自不同子广播(主要,中等和次要)的工作人员执行不同的任务,这些任务与其规模无关。我们假设,短神经肽F(sNPF)信号系统(NPY-like)可能参与工人分工,感知或响应菌落营养需求的机制。因此,我们调查了有或没有育雏群体的工人的大脑和食管下神经节(SEG)中短神经肽F受体(sNPFR)的表达。在整个工作人员亚播种中,总共9个免疫反应性sNPFR细胞簇位于大脑和食管下神经节(SEG)中。这些细胞中有些与以前在女王身上观察到的细胞相似。在蘑菇体附近的前脑,中央复合体和外侧角中发现了工人的大脑sNPFR细胞簇。在触角裂片的边缘发现了其他sNPFR免疫反应性细胞。在各个子广播中,我们观察到sNPFR簇的恒定模式和差异模式,未成年人中的sNPFR细胞数量比主要工人中的数量更多。在所有辅助子广播中检测到的那些sNPFR细胞似乎与嗅觉或SEG功能有关。子播散中簇的差异表达表明,sNPFR信号传导参与调节与特定子播散相关的行为,从而分工。一些sNPFR细胞似乎参与了营养感测和/或育雏,进食行为和运动。在没有亲戚的殖民地中,工人表现出较低的簇数,并且总体上降低了sNPFR信号。我们的研究结果表明,sNPF信号系统是神经生物学控制工人分工并检测雏鸡存在的候选系统,可能与蛋白质需求和可用性相关。

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