Towards a functional connectome in Drosophila.

IF 1.8 4区 医学 Q3 GENETICS & HEREDITY Journal of neurogenetics Pub Date : 2020-03-01 Epub Date: 2020-01-17 DOI:10.1080/01677063.2020.1712598
Katrin Vogt
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引用次数: 4

Abstract

The full functionality of the brain is determined by its molecular, cellular and circuit structure. Modern neuroscience now prioritizes the mapping of whole brain connectomes by detecting all direct neuron to neuron synaptic connections, a feat first accomplished for C. elegans, a full reconstruction of a 302-neuron nervous system. Efforts at Janelia Research Campus will soon reconstruct the whole brain connectomes of a larval and an adult Drosophila. These connectomes will provide a framework for incorporating detailed neural circuit information that Drosophila neuroscientists have gathered over decades. But when viewed in the context of a whole brain, it becomes difficult to isolate the contributions of distinct circuits, whether sensory systems or higher brain regions. The complete wiring diagram tells us that sensory information is not only processed in separate channels, but that even the earliest sensory layers are strongly synaptically interconnected. In the higher brain, long-range projections densely interconnect major brain regions and convergence centers that integrate input from different sensory systems. Furthermore, we also need to understand the impact of neuronal communication beyond direct synaptic modulation. Nevertheless, all of this can be pursued with Drosophila, combining connectomics with a diverse array of genetic tools and behavioral paradigms that provide effective approaches to entire brain function.

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果蝇的功能连接体研究。
大脑的全部功能是由它的分子、细胞和电路结构决定的。现代神经科学现在通过检测所有神经元之间的直接突触连接来优先绘制整个大脑连接体的图谱,这是一项首次在秀丽隐杆线虫上完成的壮举,它完全重建了302个神经元的神经系统。Janelia研究园区的工作人员将很快重建一只幼虫和一只成年果蝇的整个大脑连接体。这些连接体将为整合果蝇神经科学家几十年来收集的详细神经回路信息提供一个框架。但是,当在整个大脑的背景下观察时,无论是感觉系统还是大脑高级区域,都很难分离出不同回路的贡献。完整的接线图告诉我们,感觉信息不仅是在单独的通道中处理的,而且即使是最早的感觉层也是紧密相连的。在更高级的大脑中,远程投射紧密地连接了主要的大脑区域和融合中心,这些中心整合了来自不同感觉系统的输入。此外,我们还需要了解突触直接调节之外的神经元通讯的影响。然而,所有这些都可以在果蝇身上进行,将连接组学与多种遗传工具和行为范式相结合,为整个大脑功能提供有效的方法。
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来源期刊
Journal of neurogenetics
Journal of neurogenetics 医学-神经科学
CiteScore
4.40
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The Journal is appropriate for papers on behavioral, biochemical, or cellular aspects of neural function, plasticity, aging or disease. In addition to analyses in the traditional genetic-model organisms, C. elegans, Drosophila, mouse and the zebrafish, the Journal encourages submission of neurogenetic investigations performed in organisms not easily amenable to experimental genetics. Such investigations might, for instance, describe behavioral differences deriving from genetic variation within a species, or report human disease studies that provide exceptional insights into biological mechanisms
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