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细胞分辨率的新生狨猴大脑基因表达谱分析揭示了动态的种间和区域特异性差异。

Cellular-resolution gene expression profiling in the neonatal marmoset brain reveals dynamic species- and region-specific differences.

机构信息

Laboratory for Molecular Mechanisms of Brain Development, Center for Brain Science, RIKEN, Saitama 351-0198, Japan.

Integrated Systems Biology Laboratory, Department of Systems Science, Graduate School of Informatics, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Proc Natl Acad Sci U S A. 2021 May 4;118(18). doi: 10.1073/pnas.2020125118.

Abstract

Precise spatiotemporal control of gene expression in the developing brain is critical for neural circuit formation, and comprehensive expression mapping in the developing primate brain is crucial to understand brain function in health and disease. Here, we developed an unbiased, automated, large-scale, cellular-resolution in situ hybridization (ISH)-based gene expression profiling system (GePS) and companion analysis to reveal gene expression patterns in the neonatal New World marmoset cortex, thalamus, and striatum that are distinct from those in mice. Gene-ontology analysis of marmoset-specific genes revealed associations with catalytic activity in the visual cortex and neuropsychiatric disorders in the thalamus. Cortically expressed genes with clear area boundaries were used in a three-dimensional cortical surface mapping algorithm to delineate higher-order cortical areas not evident in two-dimensional ISH data. GePS provides a powerful platform to elucidate the molecular mechanisms underlying primate neurobiology and developmental psychiatric and neurological disorders.

摘要

精确的时空控制基因表达在大脑发育中对于神经回路的形成至关重要,全面的表达映射在发育中的灵长类动物大脑中对于理解健康和疾病中的大脑功能至关重要。在这里,我们开发了一种无偏倚的、自动化的、大规模的、细胞分辨率的基于原位杂交(ISH)的基因表达谱系统(GePS)和配套分析,以揭示新生新世界狨猴皮层、丘脑和纹状体中的基因表达模式与小鼠不同。狨猴特异性基因的基因本体分析显示与视觉皮层中的催化活性和丘脑的神经精神障碍有关。具有明确区域边界的皮层表达基因被用于三维皮层表面映射算法,以描绘二维 ISH 数据中不明显的更高阶皮层区域。GePS 提供了一个强大的平台,可以阐明灵长类动物神经生物学和发育性精神和神经障碍的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0400/8106353/3b5a4e8dc31c/pnas.2020125118fig01.jpg

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