Skip to content
Open access · CC-BY via OpenAlex

An atlas of cortical arealization identifies dynamic molecular signatures

Aparna Bhaduri, Carmen Sandoval-Espinosa, Marcos Otero‐García, Irene Oh, Raymund Yin, Ugomma C. Eze, Tomasz J. Nowakowski, Arnold R. Kriegstein

Nature · 2021 · ▲ 288 citations

Abstract

Abstract The human brain is subdivided into distinct anatomical structures, including the neocortex, which in turn encompasses dozens of distinct specialized cortical areas. Early morphogenetic gradients are known to establish early brain regions and cortical areas, but how early patterns result in finer and more discrete spatial differences remains poorly understood 1 . Here we use single-cell RNA sequencing to profile ten major brain structures and six neocortical areas during peak neurogenesis and early gliogenesis. Within the neocortex, we find that early in the second trimester, a large number of genes are differentially expressed across distinct cortical areas in all cell types, including radial glia, the neural progenitors of the cortex. However, the abundance of areal transcriptomic signatures increases as radial glia differentiate into intermediate progenitor cells and ultimately give rise to excitatory neurons. Using an automated, multiplexed single-molecule fluorescent in situ hybridization approach, we find that laminar gene-expression patterns are highly dynamic across cortical regions. Together, our data suggest that early cortical areal patterning is defined by strong, mutually exclusive frontal and occipital gene-expression signatures, with resulting gradients giving rise to the specification of areas between these two poles throughout successive developmental timepoints.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1038/s41586-021-03910-8
Canonical
link ↗
Fetched
2026-07-25 MST

Cite this

APA
Bhaduri, A., Sandoval-Espinosa, C., Otero‐García, M., Oh, I., Yin, R., Eze, U.C., Nowakowski, T.J., &amp; Kriegstein, A.R. (2021). An atlas of cortical arealization identifies dynamic molecular signatures. <em>Nature</em>. https://doi.org/10.1038/s41586-021-03910-8
Vancouver
Bhaduri A, Sandoval-Espinosa C, Otero‐García M, Oh I, Yin R, Eze UC, et al. An atlas of cortical arealization identifies dynamic molecular signatures. Nature. 2021. doi:10.1038/s41586-021-03910-8.
BibTeX
@article{aparna2021Anatla, title = {An atlas of cortical arealization identifies dynamic molecular signatures}, author = {Aparna Bhaduri and Carmen Sandoval-Espinosa and Marcos Otero‐García and Irene Oh and Raymund Yin and Ugomma C. Eze and Tomasz J. Nowakowski and Arnold R. Kriegstein}, journal = {Nature}, year = {2021}, doi = {10.1038/s41586-021-03910-8}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings