Comparison of chromatin accessibility landscapes during early development of prefrontal cortex between rhesus macaque and human

Author:

Yao Xuelong,Lu Zongyang,Feng ZhanyingORCID,Gao Lei,Zhou Xin,Li Min,Zhong Suijuan,Wu QianORCID,Liu Zhenbo,Zhang Haofeng,Liu Zeyuan,Yi Lizhi,Zhou TaoORCID,Zhao XudongORCID,Zhang Jun,Wang YongORCID,Huang XingxuORCID,Wang XiaoqunORCID,Liu JiangORCID

Abstract

AbstractEpigenetic information regulates gene expression and development. However, our understanding of the evolution of epigenetic regulation on brain development in primates is limited. Here, we compared chromatin accessibility landscapes and transcriptomes during fetal prefrontal cortex (PFC) development between rhesus macaques and humans. A total of 304,761 divergent DNase I-hypersensitive sites (DHSs) are identified between rhesus macaques and humans, although many of these sites share conserved DNA sequences. Interestingly, most of the cis-elements linked to orthologous genes with dynamic expression are divergent DHSs. Orthologous genes expressed at earlier stages tend to have conserved cis-elements, whereas orthologous genes specifically expressed at later stages seldom have conserved cis-elements. These genes are enriched in synapse organization, learning and memory. Notably, DHSs in the PFC at early stages are linked to human educational attainment and cognitive performance. Collectively, the comparison of the chromatin epigenetic landscape between rhesus macaques and humans suggests a potential role for regulatory elements in the evolution of differences in cognitive ability between non-human primates and humans.

Funder

National Natural Science Foundation of China

Ministry of Science and Technology of the People's Republic of China

Key research project of Frontier Science of Chinese Academy of Science

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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