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			        		Jianbo LI
			        		
			        		
			        		
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			        		Ligang WANG
			        		
			        		
			        		
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			        		Dawei YU
			        		
			        		
			        		
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			        		Junfeng HAO
			        		
			        		
			        		
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			        		Longchao ZHANG
			        		
			        		
			        		
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			        		Adeniyi C ADEOLA
			        		
			        		
			        		
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			        		Bingyu MAO
			        		
			        		
			        		
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			        		Yun GAO
			        		
			        		
			        		
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			        		Shifang WU
			        		
			        		
			        		
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			        		Chunling ZHU
			        		
			        		
			        		
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			        		Yongqing ZHANG
			        		
			        		
			        		
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			        		Jilong REN
			        		
			        		
			        		
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			        		Changgai MU
			        		
			        		
			        		
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			        		David M IRWIN
			        		
			        		
			        		
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			        		Lixian WANG
			        		
			        		
			        		
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			        		Tang HAI
			        		
			        		
			        		
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			        		Haibing XIE
			        		
			        		
			        		
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			        		Yaping ZHANG
			        		
			        		
			        		
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			        		Author Information
			        		
 - Publication Type:Journal Article
 - Keywords: Angiogenesis; Osteogenesis; Rib-genesis; Thoracolumbar vertebra transition; scRNA-seq
 - From: Genomics, Proteomics & Bioinformatics 2021;19(3):423-436
 - CountryChina
 - Language:English
 - Abstract: Development of thoracolumbar vertebra (TLV) and rib primordium (RP) is a common evolutionary feature across vertebrates, although whole-organism analysis of the expression dynamics of TLV- and RP-related genes has been lacking. Here, we investigated the single-cell transcriptome landscape of thoracic vertebra (TV), lumbar vertebra (LV), and RP cells from a pig embryo at 27 days post-fertilization (dpf) and identified six cell types with distinct gene expression signatures. In-depth dissection of the gene expression dynamics and RNA velocity revealed a coupled process of osteogenesis and angiogenesis during TLV and RP development. Further analysis of cell type-specific and strand-specific expression uncovered the extremely high level of HOXA10 3'-UTR sequence specific to osteoblasts of LV cells, which may function as anti-HOXA10-antisense by counteracting the HOXA10-antisense effect to determine TLV transition. Thus, this work provides a valuable resource for understanding embryonic osteogenesis and angiogenesis underlying vertebrate TLV and RP development at the cell type-specific resolution, which serves as a comprehensive view on the transcriptional profile of animal embryo development.
 
            
