A taxonomy of transcriptomic cell types across the isocortex and hippocampal formation.

大脑皮层和海马结构中转录组细胞类型的分类

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作者:Yao Zizhen, van Velthoven Cindy T J, Nguyen Thuc Nghi, Goldy Jeff, Sedeno-Cortes Adriana E, Baftizadeh Fahimeh, Bertagnolli Darren, Casper Tamara, Chiang Megan, Crichton Kirsten, Ding Song-Lin, Fong Olivia, Garren Emma, Glandon Alexandra, Gouwens Nathan W, Gray James, Graybuck Lucas T, Hawrylycz Michael J, Hirschstein Daniel, Kroll Matthew, Lathia Kanan, Lee Changkyu, Levi Boaz, McMillen Delissa, Mok Stephanie, Pham Thanh, Ren Qingzhong, Rimorin Christine, Shapovalova Nadiya, Sulc Josef, Sunkin Susan M, Tieu Michael, Torkelson Amy, Tung Herman, Ward Katelyn, Dee Nick, Smith Kimberly A, Tasic Bosiljka, Zeng Hongkui
The isocortex and hippocampal formation (HPF) in the mammalian brain play critical roles in perception, cognition, emotion, and learning. We profiled ∼1.3 million cells covering the entire adult mouse isocortex and HPF and derived a transcriptomic cell-type taxonomy revealing a comprehensive repertoire of glutamatergic and GABAergic neuron types. Contrary to the traditional view of HPF as having a simpler cellular organization, we discover a complete set of glutamatergic types in HPF homologous to all major subclasses found in the six-layered isocortex, suggesting that HPF and the isocortex share a common circuit organization. We also identify large-scale continuous and graded variations of cell types along isocortical depth, across the isocortical sheet, and in multiple dimensions in hippocampus and subiculum. Overall, our study establishes a molecular architecture of the mammalian isocortex and hippocampal formation and begins to shed light on its underlying relationship with the development, evolution, connectivity, and function of these two brain structures.

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