PUBLICATION
            Full-Length Transcriptome Sequencing and the Discovery of New Transcripts in the Unfertilized Eggs of Zebrafish (Danio rerio)
- Authors
- Mehjabin, R., Xiong, L., Huang, R., Yang, C., Chen, G., He, L., Liao, L., Zhu, Z., Wang, Y.
- ID
- ZDB-PUB-190316-3
- Date
- 2019
- Source
- G3 (Bethesda) 9(6): 1831-1838 (Journal)
- Registered Authors
- Zhu, Zuoyan
- Keywords
- RNA-seq, full-length transcriptome sequencing, unfertilized egg, zebrafish (Danio rerio)
- MeSH Terms
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                - Animals
- Exome Sequencing*
- Computational Biology/methods
- Ovum/metabolism*
- Cluster Analysis
- Transcriptome*
- Embryonic Development/genetics
- Zebrafish/genetics*
- Gene Expression Profiling*
- Gene Expression Regulation, Developmental
- Genome
- Sequence Analysis, RNA
- Genomics/methods
 
- PubMed
- 30872328 Full text @ G3 (Bethesda)
            Citation
        
        
            Mehjabin, R., Xiong, L., Huang, R., Yang, C., Chen, G., He, L., Liao, L., Zhu, Z., Wang, Y. (2019) Full-Length Transcriptome Sequencing and the Discovery of New Transcripts in the Unfertilized Eggs of Zebrafish (Danio rerio). G3 (Bethesda). 9(6):1831-1838.
        
    
                
                    
                        Abstract
                    
                    
                
                
            
        
        
    
        
            
            
 
    
    
        
    
    
    
        
                Understanding early gene expression in zebrafish embryos is a prerequisite for developmental biology research. In this study, 1,629,447 polymerase reads were obtained from the unfertilized eggs of zebrafish via full-length transcriptome sequencing using the PacBio RS II platform firstly. Then, 102,920 unique isoforms were obtained by correction, clustering and comparison with the zebrafish genome. 12,782 genes in the genome were captured, accounting for 39.71% of the all annotated genes. Approximately 62.27% of the 12,782 genes have been alternatively spliced. GO and KEGG annotations revealed that the unfertilized eggs primarily stored genes that participate in RNA processing and nuclear protein complex composition. According to this PacBio data that aligned with the genome, 3,970 fusion genes, 819 ncRNAs, and 84 new transcripts were predicted. Illumina RNA-seq and RT-qPCR detection found that the expression of two new transcripts, PB.5289.1 and PB.10209.1, were significantly up-regulated at the 2-cell stage and down-regulated rapidly thereafter, suggesting their involvement in minor ZGA during early embryonic development. This study indicated that the unfertilized eggs of zebrafish may have retained genes directly related to cell division and development to initiate the subsequent development in a limited space and time. On the other hand, NTRs or new transcriptome regions in the genome were discovered, which provided new clues regarding ZGA of MZT during early embryonic development in fish.
            
    
        
        
    
    
    
                
                    
                        Genes / Markers
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Expression
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Phenotype
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Mutations / Transgenics
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Human Disease / Model
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Sequence Targeting Reagents
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Fish
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Orthology
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Engineered Foreign Genes
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Mapping
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    