羊膜
生物
神经科学
幽闭
电池类型
海马结构
神经元
神经发生
梨状皮质
进化生物学
基因
海马体
脊椎动物
细胞
遗传学
核心
作者
Bastienne Zaremba,Amir Fallahshahroudi,Céline Schneider,Julia Schmidt,Ioannis Sarropoulos,Evgeny Leushkin,Bianka Berki,Enya Van Poucke,Per Jensen,Rodrigo Senovilla-Ganzo,Francisca Hervas-Sotomayor,Nils Trost,Francesco Lamanna,Mari Sepp,Fernando García‐Moreno,Henrik Kaessmann
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-02-13
卷期号:387 (6735): eadp5182-eadp5182
被引量:46
标识
DOI:10.1126/science.adp5182
摘要
Innovations in the pallium likely facilitated the evolution of advanced cognitive abilities in birds. We therefore scrutinized its cellular composition and evolution using cell type atlases from chicken, mouse, and nonavian reptiles. We found that the avian pallium shares most inhibitory neuron types with other amniotes. Whereas excitatory neuron types in amniote hippocampal regions show evolutionary conservation, those in other pallial regions have diverged. Neurons in the avian mesopallium display gene expression profiles akin to the mammalian claustrum and deep cortical layers, while certain nidopallial cell types resemble neurons in the piriform cortex. Lastly, we observed substantial gene expression convergence between the dorsally located hyperpallium and ventrally located nidopallium during late development, suggesting that topological location does not always dictate gene expression programs determining functional properties in the adult avian pallium.
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