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The Circuitry of Olfactory Projection Neurons in the Brain of the Honeybee Apis mellifera

机译:蜜蜂大脑中的嗅觉投射神经元回路

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摘要

In the honeybee brain, two prominent tracts – the medial and the lateral antennal lobe tract – project from the primary olfactory center, the antennal lobes (ALs), to the central brain, the mushroom bodies (MBs), and the protocerebral lobe (PL). Intracellularly stained uniglomerular projection neurons were reconstructed, registered to the 3D honeybee standard brain atlas, and then used to derive the spatial properties and quantitative morphology of the neurons of both tracts. We evaluated putative synaptic contacts of projection neurons (PNs) using confocal microscopy. Analysis of the patterns of axon terminals revealed a domain-like innervation within the MB lip neuropil. PNs of the lateral tract arborized more sparsely within the lips and exhibited fewer synaptic boutons, while medial tract neurons occupied broader regions in the MB calyces and the PL. Our data show that uPNs from the medial and lateral tract innervate both the core and the cortex of the ipsilateral MB lip but differ in their innervation patterns in these regions. In the mushroombody neuropil collar we found evidence for ALT boutons suggesting the collar as a multi modal input site including olfactory input similar to lip and basal ring. In addition, our data support the conclusion drawn in previous studies that reciprocal synapses exist between PNs, octopaminergic-, and GABAergic cells in the MB calyces. For the first time, we found evidence for connections between both tracts within the AL.
机译:在蜜蜂的大脑中,从主要嗅觉中心,触角叶(AL)到中枢脑,蘑菇体(MBs)和前脑叶(PL)突出了两个突出的通道-内侧和外侧触角叶道。 )。重建细胞内染色的单肾小球投射神经元,将其注册到3D蜜蜂标准脑图集,然后用于推导两个区域神经元的空间特性和定量形态。我们使用共聚焦显微镜评估了推定神经元(PNs)的突触接触。分析轴突末端的模式揭示了MB唇神经纤维内的域样神经支配。外侧束的PN在嘴唇内稀疏地排列,并显示较少的突触钮扣,而内侧束神经元则占据了MB萼和PL的较宽区域。我们的数据显示,来自内侧和外侧管道的uPNs使同侧MB唇的核心和皮质神经支配,但在这些区域的神经支配模式不同。在蘑菇体神经毛领中,我们发现了ALT钮扣的证据,表明该领为多模式输入位,包括类似于嘴唇和基环的嗅觉输入。此外,我们的数据支持先前研究得出的结论:MB萼片中的PNs,章胺能和GABA能细胞之间存在相互的突触。我们首次发现了AL内部两个区域之间联系的证据。

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