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Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution

Although the continual expansion of the brain during primate evolution accounts for our enhanced cognitive capabilities, the drivers of brain evolution have scarcely been explored in these ancestral nodes. Here, we performed large-scale comparative genomic, transcriptomic, and epigenomic analyses to...

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Autores principales: Zhuang, Xiao-Lin, Zhang, Jin-Jin, Shao, Yong, Ye, Yaxin, Chen, Chun-Yan, Zhou, Long, Wang, Zheng-bo, Luo, Xin, Su, Bing, Yao, Yong-Gang, Cooper, David N, Hu, Ben-Xia, Wang, Lu, Qi, Xiao-Guang, Lin, Jiangwei, Zhang, Guo-Jie, Wang, Wen, Sheng, Nengyin, Wu, Dong-Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10404817/
https://www.ncbi.nlm.nih.gov/pubmed/37494289
http://dx.doi.org/10.1093/molbev/msad173
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author Zhuang, Xiao-Lin
Zhang, Jin-Jin
Shao, Yong
Ye, Yaxin
Chen, Chun-Yan
Zhou, Long
Wang, Zheng-bo
Luo, Xin
Su, Bing
Yao, Yong-Gang
Cooper, David N
Hu, Ben-Xia
Wang, Lu
Qi, Xiao-Guang
Lin, Jiangwei
Zhang, Guo-Jie
Wang, Wen
Sheng, Nengyin
Wu, Dong-Dong
author_facet Zhuang, Xiao-Lin
Zhang, Jin-Jin
Shao, Yong
Ye, Yaxin
Chen, Chun-Yan
Zhou, Long
Wang, Zheng-bo
Luo, Xin
Su, Bing
Yao, Yong-Gang
Cooper, David N
Hu, Ben-Xia
Wang, Lu
Qi, Xiao-Guang
Lin, Jiangwei
Zhang, Guo-Jie
Wang, Wen
Sheng, Nengyin
Wu, Dong-Dong
author_sort Zhuang, Xiao-Lin
collection PubMed
description Although the continual expansion of the brain during primate evolution accounts for our enhanced cognitive capabilities, the drivers of brain evolution have scarcely been explored in these ancestral nodes. Here, we performed large-scale comparative genomic, transcriptomic, and epigenomic analyses to investigate the evolutionary alterations acquired by brain genes and provide comprehensive listings of innovatory genetic elements along the evolutionary path from ancestral primates to human. The regulatory sequences associated with brain-expressed genes experienced rapid change, particularly in the ancestor of the Simiiformes. Extensive comparisons of single-cell and bulk transcriptomic data between primate and nonprimate brains revealed that these regulatory sequences may drive the high expression of certain genes in primate brains. Employing in utero electroporation into mouse embryonic cortex, we show that the primate-specific brain-biased gene BMP7 was recruited, probably in the ancestor of the Simiiformes, to regulate neuronal proliferation in the primate ventricular zone. Our study provides a comprehensive listing of genes and regulatory changes along the brain evolution lineage of ancestral primates leading to human. These data should be invaluable for future functional studies that will deepen our understanding not only of the genetic basis of human brain evolution but also of inherited disease.
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spelling pubmed-104048172023-08-08 Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution Zhuang, Xiao-Lin Zhang, Jin-Jin Shao, Yong Ye, Yaxin Chen, Chun-Yan Zhou, Long Wang, Zheng-bo Luo, Xin Su, Bing Yao, Yong-Gang Cooper, David N Hu, Ben-Xia Wang, Lu Qi, Xiao-Guang Lin, Jiangwei Zhang, Guo-Jie Wang, Wen Sheng, Nengyin Wu, Dong-Dong Mol Biol Evol Discoveries Although the continual expansion of the brain during primate evolution accounts for our enhanced cognitive capabilities, the drivers of brain evolution have scarcely been explored in these ancestral nodes. Here, we performed large-scale comparative genomic, transcriptomic, and epigenomic analyses to investigate the evolutionary alterations acquired by brain genes and provide comprehensive listings of innovatory genetic elements along the evolutionary path from ancestral primates to human. The regulatory sequences associated with brain-expressed genes experienced rapid change, particularly in the ancestor of the Simiiformes. Extensive comparisons of single-cell and bulk transcriptomic data between primate and nonprimate brains revealed that these regulatory sequences may drive the high expression of certain genes in primate brains. Employing in utero electroporation into mouse embryonic cortex, we show that the primate-specific brain-biased gene BMP7 was recruited, probably in the ancestor of the Simiiformes, to regulate neuronal proliferation in the primate ventricular zone. Our study provides a comprehensive listing of genes and regulatory changes along the brain evolution lineage of ancestral primates leading to human. These data should be invaluable for future functional studies that will deepen our understanding not only of the genetic basis of human brain evolution but also of inherited disease. Oxford University Press 2023-07-26 /pmc/articles/PMC10404817/ /pubmed/37494289 http://dx.doi.org/10.1093/molbev/msad173 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Zhuang, Xiao-Lin
Zhang, Jin-Jin
Shao, Yong
Ye, Yaxin
Chen, Chun-Yan
Zhou, Long
Wang, Zheng-bo
Luo, Xin
Su, Bing
Yao, Yong-Gang
Cooper, David N
Hu, Ben-Xia
Wang, Lu
Qi, Xiao-Guang
Lin, Jiangwei
Zhang, Guo-Jie
Wang, Wen
Sheng, Nengyin
Wu, Dong-Dong
Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title_full Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title_fullStr Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title_full_unstemmed Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title_short Integrative Omics Reveals Rapidly Evolving Regulatory Sequences Driving Primate Brain Evolution
title_sort integrative omics reveals rapidly evolving regulatory sequences driving primate brain evolution
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10404817/
https://www.ncbi.nlm.nih.gov/pubmed/37494289
http://dx.doi.org/10.1093/molbev/msad173
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