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投射组学的力量:斑马鱼幼体大脑中的基因镶嵌标记揭示了感觉回路的组织原则。

The power of projectomes: genetic mosaic labeling in the larval zebrafish brain reveals organizing principles of sensory circuits.

作者信息

Robles Estuardo

机构信息

a Department of Biological Sciences and Institute for Integrative Neuroscience , Purdue University , West Lafayette , IN , USA.

出版信息

J Neurogenet. 2017 Sep;31(3):61-69. doi: 10.1080/01677063.2017.1359834. Epub 2017 Aug 10.

Abstract

In no vertebrate species do we possess an accurate, comprehensive tally of neuron types in the brain. This is in no small part due to the vast diversity of neuronal types that comprise complex vertebrate nervous systems. A fundamental goal of neuroscience is to construct comprehensive catalogs of cell types defined by structure, connectivity, and physiological response properties. This type of information will be invaluable for generating models of how assemblies of neurons encode and distribute sensory information and correspondingly alter behavior. This review summarizes recent efforts in the larval zebrafish to construct sensory projectomes, comprehensive analyses of axonal morphologies in sensory axon tracts. Focusing on the olfactory and optic tract, these studies revealed principles of sensory information processing in the olfactory and visual systems that could not have been directly quantified by other methods. In essence, these studies reconstructed the optic and olfactory tract in a virtual manner, providing insights into patterns of neuronal growth that underlie the formation of sensory axon tracts. Quantitative analysis of neuronal diversity revealed organizing principles that determine information flow through sensory systems in the zebrafish that are likely to be conserved across vertebrate species. The generation of comprehensive cell type classifications based on structural, physiological, and molecular features will lead to testable hypotheses on the functional role of individual sensory neuron subtypes in controlling specific sensory-evoked behaviors.

摘要

在任何脊椎动物物种中,我们都没有关于大脑中神经元类型的准确、全面的统计。这在很大程度上是由于构成复杂脊椎动物神经系统的神经元类型极其多样。神经科学的一个基本目标是构建由结构、连接性和生理反应特性定义的细胞类型的综合目录。这类信息对于生成神经元集合如何编码和分配感觉信息并相应改变行为的模型将非常宝贵。本综述总结了最近在幼体斑马鱼中构建感觉投射图谱的工作,即对感觉轴突束中轴突形态的综合分析。聚焦于嗅觉和视神经束,这些研究揭示了嗅觉和视觉系统中感觉信息处理的原理,而这些原理是其他方法无法直接量化的。从本质上讲,这些研究以虚拟方式重建了视神经束和嗅觉束,为感觉轴突束形成背后的神经元生长模式提供了见解。对神经元多样性的定量分析揭示了决定斑马鱼感觉系统信息流的组织原则,这些原则可能在脊椎动物物种中是保守的。基于结构、生理和分子特征生成综合的细胞类型分类将产生关于个体感觉神经元亚型在控制特定感觉诱发行为中的功能作用的可测试假设。

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