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连接组学揭示大脑发育的成熟规律。

Connectomes across development reveal principles of brain maturation.

机构信息

Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada.

Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.

出版信息

Nature. 2021 Aug;596(7871):257-261. doi: 10.1038/s41586-021-03778-8. Epub 2021 Aug 4.

Abstract

An animal's nervous system changes as its body grows from birth to adulthood and its behaviours mature. The form and extent of circuit remodelling across the connectome is unknown. Here we used serial-section electron microscopy to reconstruct the full brain of eight isogenic Caenorhabditis elegans individuals across postnatal stages to investigate how it changes with age. The overall geometry of the brain is preserved from birth to adulthood, but substantial changes in chemical synaptic connectivity emerge on this consistent scaffold. Comparing connectomes between individuals reveals substantial differences in connectivity that make each brain partly unique. Comparing connectomes across maturation reveals consistent wiring changes between different neurons. These changes alter the strength of existing connections and create new connections. Collective changes in the network alter information processing. During development, the central decision-making circuitry is maintained, whereas sensory and motor pathways substantially remodel. With age, the brain becomes progressively more feedforward and discernibly modular. Thus developmental connectomics reveals principles that underlie brain maturation.

摘要

动物的神经系统会随着其从出生到成年的身体生长和行为成熟而发生变化。目前尚不清楚整个连接组中电路重塑的形式和程度。在这里,我们使用连续切片电子显微镜重建了八个同基因秀丽隐杆线虫个体在出生后的不同阶段的全脑,以研究其随年龄的变化。从出生到成年,大脑的整体几何形状得以保留,但在这个一致的支架上,化学突触连接出现了实质性的变化。比较个体之间的连接组揭示了连接的实质性差异,使每个大脑具有部分独特性。比较成熟过程中的连接组揭示了不同神经元之间一致的布线变化。这些变化改变了现有连接的强度并创建了新的连接。网络的集体变化改变了信息处理。在发育过程中,中央决策回路得以维持,而感觉和运动通路则进行了实质性的重塑。随着年龄的增长,大脑变得越来越前馈,明显模块化。因此,发育连接组学揭示了大脑成熟的基础原则。

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