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Clonal analysis of Drosophila antennal lobe neurons: diverse neuronal architectures in the lateral neuroblast lineage

机译:果蝇触角叶神经元的克隆分析:侧神经母细胞谱系中不同的神经元结构

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摘要

The antennal lobe (AL) is the primary structure in the Drosophila brain that relays odor information from the antennae to higher brain centers. The characterization of uniglomerular projection neurons (PNs) and some local interneurons has facilitated our understanding of olfaction; however, many other AL neurons remain unidentified. Because neuron types are mostly specified by lineage and temporal origins, we use the MARCM techniques with a set of enhancer-trap GAL4 lines to perform systematical lineage analysis to characterize neuron morphologies, lineage origin and birth timing in the three AL neuron lineages that contain GAL4-GH146-positive PNs: anterodorsal, lateral and ventral lineages. The results show that the anterodorsal lineage is composed of pure uniglomerular PNs that project through the inner antennocerebral tract. The ventral lineage produces uniglomerular and multiglomerular PNs that project through the middle antennocerebral tract. The lateral lineage generates multiple types of neurons, including uniglomeurlar PNs, diverse atypical PNs, various types of AL local interneurons and the neurons that make no connection within the ALs. Specific neuron types in all three lineages are produced in specific time windows, although multiple neuron types in the lateral lineage are made simultaneously. These systematic cell lineage analyses have not only filled gaps in the olfactory map, but have also exemplified additional strategies used in the brain to increase neuronal diversity.
机译:触角叶(AL)是果蝇大脑中的主要结构,可将气味信息从触角传递到较高的大脑中枢。单肾小球投射神经元(PNs)和一些局部中间神经元的表征促进了我们对嗅觉的理解。然而,许多其他AL神经元仍未被识别。由于神经元类型主要由谱系和时间起源指定,因此我们将MARCM技术与一组增强子捕获的GAL4谱系一起使用,以进行系统的谱系分析,以表征包含GAL4的三个AL神经元谱系的神经元形态,谱系起源和出生时机。 -GH146阳性PN:前房,外侧和腹侧血统。结果表明,前房沿谱系由穿过肾盂内侧脑道的纯单肾小球PN组成。腹侧谱系产生单肾和多肾PNs,这些PNs穿过中脑腱膜通道。外侧谱系产生多种类型的神经元,包括单神经元PN,不同的非典型PN,各种类型的AL局部中间神经元以及在AL内部没有任何联系的神经元。尽管横向谱系中的多个神经元类型是同时生成的,但所有三个谱系中的特定神经元类型都是在特定的时间窗口中生成的。这些系统的细胞谱系分析不仅填补了嗅觉图中的空白,而且还例证了大脑中用于增加神经元多样性的其他策略。

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