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首页> 外文期刊>The Journal of Comparative Neurology >Structure and development of the subesophageal zone of the Drosophila Drosophila brain. II. Sensory compartments
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Structure and development of the subesophageal zone of the Drosophila Drosophila brain. II. Sensory compartments

机译:果蝇果蝇脑底层区域的结构与发展。 II。 感官隔间

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Abstract The subesophageal zone (SEZ) of the Drosophila brain processes mechanosensory and gustatory sensory input from sensilla located on the head, mouth cavity and trunk. Motor output from the SEZ directly controls the movements involved in feeding behavior. In an accompanying paper (Hartenstein et al., [Hartenstein, V., 2017]), we analyzed the systems of fiber tracts and secondary lineages to establish reliable criteria for defining boundaries between the four neuromeres of the SEZ, as well as discrete longitudinal neuropil domains within each SEZ neuromere. Here we use this anatomical framework to systematically map the sensory projections entering the SEZ throughout development. Our findings show continuity between larval and adult sensory neuropils. Gustatory axons from internal and external taste sensilla of the larva and adult form two closely related sensory projections, (a) the anterior central sensory center located deep in the ventromedial neuropil of the tritocerebrum and mandibular neuromere, and (b) the anterior ventral sensory center (AVSC), occupying a superficial layer within the ventromedial tritocerebrum. Additional, presumed mechanosensory terminal axons entering via the labial nerve define the ventromedial sensory center (VMSC) in the maxilla and labium. Mechanosensory afferents of the massive array of chordotonal organs (Johnston's organ) of the adult antenna project into the centrolateral neuropil column of the anterior SEZ, creating the antenno‐mechanosensory and motor center (AMMC). Dendritic projections of dye back‐filled motor neurons extend throughout a ventral layer of the SEZ, overlapping widely with the AVSC and VMSC. Our findings elucidate fundamental structural aspects of the developing sensory systems in Drosophila .
机译:摘要果蝇大脑的潜水区(SEZ)处理位于头部,口腔和躯干的Sensilla的机械损伤和味觉输入。 SEZ的电机输出直接控制喂养行为所涉及的运动。在伴随的论文中(Hartenstein等,[Hartenstein,V.,2017]),我们分析了纤维束和辅助谱系的系统,以建立可靠的标准,用于定义SEZ的四个神经元区之间的边界,以及离散的纵向每个SEZ Neuroomere内的神经潜域域。在这里,我们使用此解剖框架来系统地映射整个开发过程中进入SEZ的感官投影。我们的调查结果显示幼虫和成人感官神经潜岩之间的连续性。来自幼虫和成人的内外味道Sensilla的味觉轴突,形成了两个密切相关的感官突起,(a)前部中央感官中心位于三梗死的腹侧神经孔和下颌神经细胞,和(b)前腹侧感官中心(AVSC),占据腹侧三梗塞内的浅表层。通过Labial神经进入的附加推定机械感性终端轴突在上颌和唇息中定义了腹侧感官中心(VMSC)。成人天线突出阵列(Johnston Organs)大规模阵列的机械损伤事件进入前SEZ的中心神经统计柱,创建天线机械损伤和电动机中心(AMMC)。染料后填充电动机神经元的树突突起在SEZ的腹侧层中延伸,与AVSC和VMSC广泛重叠。我们的研究结果阐明了果蝇在果蝇中的发展中的基本结构方面。

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