作者
Amy Bernard, Laura S Lubbers, Keith Q Tanis, Rui Luo, Alexei A Podtelezhnikov, Eva M Finney, Mollie ME McWhorter, Kyle Serikawa, Tracy Lemon, Rebecca Morgan, Catherine Copeland, Kimberly Smith, Vivian Cullen, Jeremy Davis-Turak, Chang-Kyu Lee, Susan M Sunkin, Andrey P Loboda, David M Levine, David J Stone, Michael J Hawrylycz, Christopher J Roberts, Allan R Jones, Daniel H Geschwind, Ed S Lein
发表日期
2012/3/22
期刊
Neuron
卷号
73
期号
6
页码范围
1083-1099
出版商
Elsevier
简介
Genome-wide transcriptional profiling was used to characterize the molecular underpinnings of neocortical organization in rhesus macaque, including cortical areal specialization and laminar cell-type diversity. Microarray analysis of individual cortical layers across sensorimotor and association cortices identified robust and specific molecular signatures for individual cortical layers and areas, prominently involving genes associated with specialized neuronal function. Overall, transcriptome-based relationships were related to spatial proximity, being strongest between neighboring cortical areas and between proximal layers. Primary visual cortex (V1) displayed the most distinctive gene expression compared to other cortical regions in rhesus and human, both in the specialized layer 4 as well as other layers. Laminar patterns were more similar between macaque and human compared to mouse, as was the unique V1 …
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