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Understanding Synaptogenesis and Functional Connectome in C. elegans by Imaging Technology

机译:通过成像技术了解秀丽隐杆线虫的突触发生和功能性连接体

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摘要

Formation of functional synapses is a fundamental process for establishing neural circuits and ultimately for expressing complex behavior. Extensive research has interrogated how such functional synapses are formed and how synapse formation contributes to the generation of neural circuitry and behavior. The nervous system of Caenorhabditis elegans, due to its relatively simple structure, the transparent body, and tractable genetic system, has been adapted as an excellent model to investigate synapses and the functional connectome. Advances in imaging technology together with the improvement of genetically encoded molecular tools enabled us to visualize synapses and neural circuits of the animal model, which provide insights into our understanding of molecules and their signaling pathways that mediate synapse formation and neuronal network modulation. Here, we review synaptogenesis in active zones and the mapping of local connectome in C. elegans nervous system whose understandings have been extended by the advances in imaging technology along with the genetic molecular tools.
机译:功能性突触的形成是建立神经回路并最终表达复杂行为的基本过程。广泛的研究质疑了这种功能性突触的形成方式以及突触的形成如何有助于神经回路和行为的产生。秀丽隐杆线虫的神经系统由于其相对简单的结构,透明的身体和易处理的遗传系统,已被用作研究突触和功能性连接体的优秀模型。成像技术的进步以及遗传编码分子工具的改进使我们能够可视化动物模型的突触和神经回路,从而深入了解我们对介导突触形成和神经元网络调节的分子及其信号传导途径的了解。在这里,我们审查在活动区的突触发生和线虫神经系统的局部连接组的映射,其理解已通过成像技术以及遗传分子工具的发展得到了扩展。

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