Comparative 3D genome architecture in vertebrates

Author:

Li Diyan,He Mengnan,Tang Qianzi,Tian Shilin,Zhang Jiaman,Li Yan,Wang Danyang,Jin Long,Ning Chunyou,Zhu Wei,Hu Silu,Long Keren,Ma Jideng,Liu Jing,Zhang Zhihua,Li MingzhouORCID

Abstract

Abstract Background The three-dimensional (3D) architecture of the genome has a highly ordered and hierarchical nature, which influences the regulation of essential nuclear processes at the basis of gene expression, such as gene transcription. While the hierarchical organization of heterochromatin and euchromatin can underlie differences in gene expression that determine evolutionary differences among species, the way 3D genome architecture is affected by evolutionary forces within major lineages remains unclear. Here, we report a comprehensive comparison of 3D genomes, using high resolution Hi-C data in fibroblast cells of fish, chickens, and 10 mammalian species. Results This analysis shows a correlation between genome size and chromosome length that affects chromosome territory (CT) organization in the upper hierarchy of genome architecture, whereas lower hierarchical features, including local transcriptional availability of DNA, are selected through the evolution of vertebrates. Furthermore, conservation of topologically associating domains (TADs) appears strongly associated with the modularity of expression profiles across species. Additionally, LINE and SINE transposable elements likely contribute to heterochromatin and euchromatin organization, respectively, during the evolution of genome architecture. Conclusions Our analysis uncovers organizational features that appear to determine the conservation and transcriptional regulation of functional genes across species. These findings can guide ongoing investigations of genome evolution by extending our understanding of the mechanisms shaping genome architecture.

Funder

Beijing Advanced Discipline Fund

Special investigation on science and technology basic resources of the MOST, China

State Key Laboratory of Drug Research

National Natural Science Foundation of China

Beijing Natural Science Foundation

National Key R&D Program of China

Sichuan Science and Technology Program

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Developmental Biology,Plant Science,General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Physiology,Ecology, Evolution, Behavior and Systematics,Structural Biology,Biotechnology

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