生物
猕猴
幽闭
地图集(解剖学)
转录组
神经科学
脑图谱
计算生物学
进化生物学
遗传学
解剖
基因
基因表达
核心
作者
Ying Lei,Yuxuan Liu,Mingli Wang,Nini Yuan,Yujie Hou,Lingjun Ding,Zhiyong Zhu,Zihan Wu,Chao Li,Mingyuan Zheng,Ruiyi Zhang,Ana Rita Ribeiro Gomes,Yuanfang Xu,Zhaoke Luo,Zhen Liu,Qinwen Chai,Pierre Misery,Yan-Qing Zhong,Xinxiang Song,Camille Lamy
出处
期刊:Cell
[Cell Press]
日期:2025-04-01
被引量:7
标识
DOI:10.1016/j.cell.2025.02.037
摘要
Claustrum orchestrates brain functions via its connections with numerous brain regions, but its molecular and cellular organization remains unresolved. Single-nucleus RNA sequencing of 227,750 macaque claustral cells identified 48 transcriptome-defined cell types, with most glutamatergic neurons similar to deep-layer insular neurons. Comparison of macaque, marmoset, and mouse transcriptomes revealed macaque-specific cell types. Retrograde tracer injections at 67 cortical and 7 subcortical regions defined four distinct distribution zones of retrogradely labeled claustral neurons. Joint analysis of whole-brain connectivity and single-cell spatial transcriptome showed that these four zones containing distinct compositions of glutamatergic (but not GABAergic) cell types preferentially connected to specific brain regions with a strong ipsilateral bias. Several macaque-specific glutamatergic cell types in ventral vs. dorsal claustral zones selectively co-projected to two functionally related areas-entorhinal cortex and hippocampus vs. motor cortex and putamen, respectively. These data provide the basis for elucidating the neuronal organization underlying diverse claustral functions.
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