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幼虫本体感受器中枢突触组织的特征。

Distinctive features of the central synaptic organization of larval proprioceptors.

机构信息

Committee on Neurobiology, The University of Chicago, Chicago, IL, United States.

Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, IL, United States.

出版信息

Front Neural Circuits. 2023 Jul 26;17:1223334. doi: 10.3389/fncir.2023.1223334. eCollection 2023.

Abstract

Proprioceptive feedback is critically needed for locomotor control, but how this information is incorporated into central proprioceptive processing circuits remains poorly understood. Circuit organization emerges from the spatial distribution of synaptic connections between neurons. This distribution is difficult to discern in model systems where only a few cells can be probed simultaneously. Therefore, we turned to a relatively simple and accessible nervous system to ask: how are proprioceptors' input and output synapses organized in space, and what principles underlie this organization? Using the larval connectome, we generated a map of the input and output synapses of 34 proprioceptors in several adjacent body segments (5-6 left-right pairs per segment). We characterized the spatial organization of these synapses, and compared this organization to that of other somatosensory neurons' synapses. We found three distinguishing features of larval proprioceptor synapses: (1) Generally, individual proprioceptor types display segmental somatotopy. (2) Proprioceptor output synapses both converge and diverge in space; they are organized into six spatial domains, each containing a unique set of one or more proprioceptors. Proprioceptors form output synapses along the proximal axonal entry pathway into the neuropil. (3) Proprioceptors receive few inhibitory input synapses. Further, we find that these three features do not apply to other larval somatosensory neurons. Thus, we have generated the most comprehensive map to date of how proprioceptor synapses are centrally organized. This map documents previously undescribed features of proprioceptors, raises questions about underlying developmental mechanisms, and has implications for downstream proprioceptive processing circuits.

摘要

本体感觉反馈对于运动控制至关重要,但中枢本体感觉处理回路如何整合这些信息仍知之甚少。回路组织源自神经元之间突触连接的空间分布。在只能同时探测少数细胞的模型系统中,这种分布很难被察觉。因此,我们转向相对简单和容易接近的神经系统来提出问题:本体感受器的输入和输出突触在空间中是如何组织的,以及这种组织的原则是什么?我们利用幼虫连接组学,生成了 34 个本体感受器在几个相邻体节(每个体节左右各 5-6 对)中的输入和输出突触的图谱。我们描述了这些突触的空间组织,并将其与其他躯体感觉神经元的突触进行了比较。我们发现幼虫本体感受器突触有三个区别特征:(1)通常,个体本体感受器类型显示体节躯体定位。(2)本体感受器的输出突触在空间中既有会聚又有发散;它们被组织成六个空间域,每个空间域包含一组独特的一个或多个本体感受器。本体感受器沿着轴突进入神经胶的近端路径形成输出突触。(3)本体感受器接收的抑制性输入突触很少。此外,我们发现这三个特征不适用于其他幼虫躯体感觉神经元。因此,我们生成了迄今为止最全面的图谱,展示了本体感受器的中枢组织方式。该图谱记录了本体感受器的以前未描述的特征,提出了关于潜在发育机制的问题,并对下游本体感觉处理回路具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/750f/10410283/da0037447ff8/fncir-17-1223334-g001.jpg

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