Author:
Zhu Jun-Hong,Guan Xuan-Cheng,Yi Lan-Lan,Xu Hong,Li Qiu-Yan,Cheng Wen-Jie,Xie Yu-Xiao,Li Wei-Zhen,Zhao Hong-Ye,Wei Hong-Jiang,Zhao Su-Mei
Abstract
Abstract
Background
As the largest substantive organ of animals, the liver plays an essential role in the physiological processes of digestive metabolism and immune defense. However, the cellular composition of the pig liver remains poorly understood. This investigation used single-nucleus RNA sequencing technology to identify cell types from liver tissues of pigs, providing a theoretical basis for further investigating liver cell types in pigs.
Results
The analysis revealed 13 cells clusters which were further identified 7 cell types including endothelial cells, T cells, hepatocytes, Kupffer cells, stellate cells, B cells, and cholangiocytes. The dominant cell types were endothelial cells, T cells and hepatocytes in the liver tissue of Dahe pigs and Dahe black pigs, which accounts for about 85.76% and 82.74%, respectively. The number of endothelial cells was higher in the liver tissue of Dahe pigs compared to Dahe black pigs, while the opposite tendency was observed for T cells. Moreover, functional enrichment analysis demonstrated that the differentially expressed genes in pig hepatic endothelial cells were significantly enriched in the protein processing in endoplasmic reticulum, MAPK signaling pathway, and FoxO signaling pathway. Functional enrichment analysis demonstrated that the differentially expressed genes in pig hepatic T cells were significantly enriched in the thyroid hormone signaling pathway, B cell receptor signaling pathway, and focal adhesion. Functional enrichment analysis demonstrated that the differentially expressed genes in pig hepatic hepatocytes were significantly enriched in the metabolic pathways.
Conclusions
In summary, this study provides a comprehensive cell atlas of porcine hepatic tissue. The number, gene expression level and functional characteristics of each cell type in pig liver tissue varied between breeds.
Funder
Scientific Research Fund of Yunnan Provincial Department of Education
Major Science and Technology Project of Yunnan Province
National Natural Science Foundation of China
Technological Innovation Talent Program
State School Cooperation
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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