FIGURE
            Fig. S12
- ID
 - ZDB-FIG-171227-21
 - Publication
 - Shao et al., 2017 - Vegetally localised Vrtn functions as a novel repressor to modulate bmp2b transcription during dorsoventral patterning in zebrafish.
 - Other Figures
 - All Figure Page
 - Back to All Figure Page
 
                
                    
                        Fig. S12
                    
                    
                
                
            
        
        
    
        
            
            
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 MZvrtn embryos are more sensitive to ventralisation following ß-catenin2 knockdown. (A,B) Representative phenotypes of WT and MZvrtn embryos injected with ßcat2MO (5 ng). Note the increase in the number of embryos with absence of eye in ß-cat2MO injected MZvrtn mutants. (C) Statistical analysis of ß-catenin2 knockdown in WT and MZvrtn embryos. Numbers on the top indicate total embryos counted in three independent experiments. Scale bar: 200 μm.  | 
    
                
                    
                        Expression Data
                    
                    
                
                
            
        
        
    
        
            
            
            
            
    
    
                
                    
                        Expression Detail
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Antibody Labeling
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Phenotype Data
                    
                    
                
                
            
        
        
    
        
            
            
            
            
    
    
                
                    
                        Phenotype Detail
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Acknowledgments
                    
                    
                
                
            
        
        
    
        
            
            
                
                    
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