Evolution of pallium, hippocampus,and cortical cell types revealed by single-cell transcriptomics in reptiles
Georgi Tushev; Maria Antonietta Tosches; Tracy M. Yamawaki; Robert K. Naumann; Ariel A. Jacobi; Gilles Laurent
刊名Science
2018
文献子类期刊论文
英文摘要Computations in the mammalian cortex are carried out by glutamatergic and γ-aminobutyric acid–releasing (GABAergic) neurons forming specialized circuits and areas. Here we asked how these neurons and areas evolved in amniotes. We built a gene expression atlas of the pallium of two reptilian species using large-scale single-cell messenger RNA sequencing. The transcriptomic signature of glutamatergic neurons in reptilian cortex suggests that mammalian neocortical layers are made of new cell types generated by diversification of ancestral gene-regulatory programs. By contrast, the diversity of reptilian cortical GABAergic neurons indicates that the interneuron classes known in mammals already existed in the common ancestor of all amniotes.
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语种英语
内容类型期刊论文
源URL[http://ir.siat.ac.cn:8080/handle/172644/13867]  
专题深圳先进技术研究院_脑所
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Georgi Tushev,Maria Antonietta Tosches,Tracy M. Yamawaki,et al. Evolution of pallium, hippocampus,and cortical cell types revealed by single-cell transcriptomics in reptiles[J]. Science,2018.
APA Georgi Tushev,Maria Antonietta Tosches,Tracy M. Yamawaki,Robert K. Naumann,Ariel A. Jacobi,&Gilles Laurent.(2018).Evolution of pallium, hippocampus,and cortical cell types revealed by single-cell transcriptomics in reptiles.Science.
MLA Georgi Tushev,et al."Evolution of pallium, hippocampus,and cortical cell types revealed by single-cell transcriptomics in reptiles".Science (2018).
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