生物
猕猴
狨猴
小脑
神经科学
小脑深核
灵长类动物
小脑皮质
电池类型
卷绕
转录组
基因表达
基因
受体
细胞
遗传学
古生物学
作者
Shijie Hao,Xiaojia Zhu,Zhi Rui Huang,Qianqian Yang,H.-C. Liu,Yan Wu,Y Zhan,Yuhui Dong,Chao Li,He Wang,Elize D. Haasdijk,Zihan Wu,Shenglong Li,Haotian Yan,Lijing Zhu,Shiyong Guo,Z.-H. Wang,Aojun Ye,Youning Lin,Luman Cui
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-09-26
卷期号:385 (6716)
被引量:5
标识
DOI:10.1126/science.ado3927
摘要
The molecular and cellular organization of the primate cerebellum remains poorly characterized. We obtained single-cell spatial transcriptomic atlases of macaque, marmoset, and mouse cerebella and identified primate-specific cell subtypes, including Purkinje cells and molecular-layer interneurons, that show different expression of the glutamate ionotropic receptor Delta type subunit 2 ( GRID2 ) gene. Distinct gene expression profiles were found in anterior, posterior, and vestibular regions in all species, whereas region-selective gene expression was predominantly observed in the granular layer of primates and in the Purkinje layer of mice. Gene expression gradients in the cerebellar cortex matched well with functional connectivity gradients revealed with awake functional magnetic resonance imaging, with more lobule-specific differences between primates and mice than between two primate species. These comprehensive atlases and comparative analyses provide the basis for understanding cerebellar evolution and function.
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