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在果蝇感觉神经元变态过程中再生树突的高分辨率活体成像:局部丝状伪足退化和异型树突-树突接触。

High-resolution in vivo imaging of regenerating dendrites of Drosophila sensory neurons during metamorphosis: local filopodial degeneration and heterotypic dendrite-dendrite contacts.

机构信息

Graduate School of Biostudies, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Genes Cells. 2012 Dec;17(12):939-51. doi: 10.1111/gtc.12008. Epub 2012 Nov 15.

Abstract

Neuronal circuits that are formed in early development are reorganized at later developmental stages to support a wide range of adult behaviors. At Drosophila pupal stages, one example of this reorganization is dendritic remodeling of multidendritic neurons, which is accomplished by pruning and subsequent regeneration of branches in environments quite distinct from those in larval life. Here, we used long-term in vivo time-lapse recordings at high spatiotemporal resolution and analyzed the dynamics of two adjacent cell types that remodel dendritic arbors, which eventually innervate the lateral plate of the adult abdomen. These neurons initially exhibited dynamic extension, withdrawal and local degeneration of filopodia that sprouted from all along the length of regenerating branches. At a midpupal stage, branches extending from the two cell types started fasciculating with each other, which prompted us to test the hypothesis that this heterotypic contact may serve as a guiding scaffold for shaping dendritic arbors. Unexpectedly, our cell ablation study gave only marginal effects on the branch length and the arbor shape. This result suggests that the arbor morphology of the adult neurons in this study can be specified mostly in the absence of the dendrite-dendrite contact.

摘要

在早期发育中形成的神经元回路在后期发育阶段会被重新组织,以支持广泛的成年行为。在果蝇蛹期,这种重组织的一个例子是多树突神经元的树突重塑,这是通过在与幼虫期生活环境截然不同的环境中修剪和随后再生分支来完成的。在这里,我们使用高时空分辨率的长期体内实时记录,并分析了两个相邻的细胞类型的动力学,这两个细胞类型重塑树突树,最终支配成年腹部的侧板。这些神经元最初表现出从再生分支的全长上长出的丝状伪足的动态延伸、撤回和局部退化。在中期蛹期,从这两种细胞类型延伸的分支开始彼此交织在一起,这促使我们提出假设,即这种异型接触可能作为塑造树突的导向支架。出乎意料的是,我们的细胞消融研究对分支长度和树突形状的影响很小。这一结果表明,在这项研究中,成年神经元的树突形态可以在没有树突-树突接触的情况下大部分被确定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24d3/3549480/03c73c8aae97/gtc0017-0939-f1.jpg

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