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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Diverse strategies engaged in establishing stereotypic wiring patterns among neurons sharing a common input at the visual system's first synapse
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Diverse strategies engaged in establishing stereotypic wiring patterns among neurons sharing a common input at the visual system's first synapse

机译:在视觉系统的首次突触中共享相同输入的神经元之间建立刻板印象接线模式的多样化策略

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摘要

Sensory circuits use common strategies, such as convergence and divergence, typically at different synapses, to pool or distribute inputs. Inputs from different presynaptic cell types converge onto a common postsynaptic cell, acting together to shape neuronal output (Klausberger and Somogyi, 2008). Also, individual presynaptic cells contact several postsynaptic cell types, generating divergence of signals. Attaining such complex wiring patterns relies on the orchestration of many events across development, including axonal and dendritic growth and synapse formation and elimination (reviewed by Waites et al., 2005; Sanes and Yamagata, 2009). Recent work has focused on how distinct presynaptic cell types form stereotypic connections with an individual postsynaptic cell (Morgan et al., 2011; Williamset al., 2011), but how a single presynaptic cell type diverges to form distinct wiring patterns with multiple postsynaptic cell types during development remains unexplored. Here we take advantage of the compactness of the visual system's first synapse to observe development of such a circuit in mouse retina. By imaging three types of postsynaptic bipolar cells and their common photoreceptor targets across development, we found that distinct bipolar cell types engage in disparate dendritic growth behaviors, exhibit targeted or exploratory approaches to contact photoreceptors, and adhere differently to the synaptotropic model of establishing synaptic territories. Furthermore each type establishes its final connectivity patterns with the same afferents on separate time scales. We propose that such differences in strategy and timeline could facilitate the division of common inputs among multiple postsynaptic cell types to create parallel circuits with diverse function.
机译:感觉电路使用常见的策略(例如通常在不同的突触处收敛和发散)来汇集或分配输入。来自不同突触前细胞类型的输入会汇聚到一个共同的突触后细胞,共同作用以塑造神经元输出(Klausberger和Somogyi,2008年)。同样,单个突触前细胞接触几种突触后细胞类型,从而产生信号发散。获得如此复杂的布线模式取决于整个发展过程中许多事件的编排,包括轴突和树突状生长以及突触的形成和消除(Waites等人,2005; Sanes和Yamagata,2009)综述。最近的工作集中于不同突触前细胞类型如何与单个突触后细胞形成刻板联系(Morgan等,2011; Williamset等人,2011),但是单个突触前细胞类型如何与多个突触后细胞形成不同的接线方式开发过程中的类型仍待探索。在这里,我们利用视觉系统的第一个突触的紧凑性来观察小鼠视网膜中这种电路的发展。通过对三种类型的突触后双极细胞及其在发育过程中常见的感光受体的成像,我们发现不同的双极细胞类型参与不同的树突状生长行为,表现出有针对性或探索性的接触光感受器的方法,并以不同的方式坚持建立突触区域的突触模型。此外,每种类型在不同的时间尺度上使用相同的传入来建立其最终的连接模式。我们建议这种策略和时间上的差异可以促进在多个突触后细胞类型之间的共同输入的划分,以创建具有多种功能的并行电路。

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