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Dendritic development of Drosophila high order visual system neurons is independent of sensory experience

机译:果蝇高阶视觉系统神经元的树突发育与感觉经验无关。

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Background The complex and characteristic structures of dendrites are a crucial part of the neuronal architecture that underlies brain function, and as such, their development has been a focal point of recent research. It is generally believed that dendritic development is controlled by a combination of endogenous genetic mechanisms and activity-dependent mechanisms. Therefore, it is of interest to test the relative contributions of these two types of mechanisms towards the construction of specific dendritic trees. In this study, we make use of the highly complex Vertical System (VS) of motion sensing neurons in the lobula plate of the Drosophila visual system to gauge the importance of visual input and synaptic activity to dendritic development. Results We find that the dendrites of VS1 neurons are unchanged in dark-reared flies as compared to control flies raised on a 12 hour light, 12 hour dark cycle. The dendrites of these flies show no differences from control in dendrite complexity, spine number, spine density, or axon complexity. Flies with genetically ablated eyes show a slight but significant reduction in the complexity and overall length of VS1 dendrites, although this effect may be due to a reduction in the overall size of the dendritic field in these flies. Conclusions Overall, our results indicate no role for visual experience in the development of VS dendrites, while spontaneous activity from photoreceptors may play at most a subtle role in the formation of fully complex dendrites in these high-order visual processing neurons.
机译:背景技术树突的复杂而特征性的结构是构成脑功能的神经元结构的关键部分,因此,树突的发展一直是近期研究的重点。通常认为,树突发育受内源遗传机制和活性依赖机制的组合控制。因此,有趣的是测试这两种类型的机制对特定树突树的构建的相对贡献。在这项研究中,我们利用果蝇视觉系统小叶板中运动感应神经元的高度复杂的垂直系统(VS)来衡量视觉输入和突触活动对树突发育的重要性。结果我们发现,与在12小时光照,12小时黑暗周期中饲养的对照果蝇相比,在黑暗饲养果蝇中VS1神经元的树突没有变化。这些果蝇的树突在树突复杂性,脊柱数量,脊柱密度或轴突复杂性方面与对照无差异。带有遗传消融眼的果蝇在VS1树突的复杂性和总长度上显示出轻微但显着的降低,尽管这种效果可能是由于这些果蝇中树突场的总体大小减小所致。结论总的来说,我们的结果表明视觉经验在VS树突的形成中没有作用,而来自感光细胞的自发活动可能在这些高级视觉加工神经元中完全复杂的树突的形成中起微妙的作用。

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