GEPHE SUMMARY
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									Gephebase Gene
					
		
	
									Entry Status
					
		
													Published
					
	
									GepheID
					
		
													GP00002360
					
	
									Main curator
					
		
													Courtier
					
	
            		PHENOTYPIC CHANGE
            	            
	                
	
									Trait Category
					
		
	
									Trait
					
		
	
									Trait State in Taxon A
					
		
													reduced scales
					
	
									Trait State in Taxon B
					
		
													reduced scales
					
	
									Ancestral State
					
		
													Taxon A
					
	
									Taxonomic Status
					
		
	Taxon A
					
									Latin Name
					
		
	
									Common Name
					
		
																				-
					
	
									Synonyms
					
		
																			Barbus grahami; Barbus grahami Regan, 1904; Sinocyclocheilus grahami (Regan, 1904); BMNH:1904.1.26.27
					
	
									Rank
					
		
																			species
					
	
		Lineage
	
	
															
				Show more ... 
						terygii; Actinopteri; Neopterygii; Teleostei; Osteoglossocephalai; Clupeocephala; Otomorpha; Ostariophysi; Otophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Cyprininae; Sinocyclocheilus
			
			
							NCBI Taxonomy ID
					
		
	
									is Taxon A an Infraspecies?
					
		
																													No
					
	Taxon B
					
									Latin Name
					
		
	
									Common Name
					
		
																				-
					
	
									Synonyms
					
		
																			Sinocyclocheilus anshuiensis Gan, Wu, Wei & Yang, 2013; KIZ 12060239; KIZ 12070271; KIZ 12070276; KIZ 12070277; KIZ 12070280; KIZ:12060239; KIZ:12070271; KIZ:12070276; KIZ:12070277; KIZ:12070280
					
	
									Rank
					
		
																			species
					
	
		Lineage
	
	
															
				Show more ... 
						terygii; Actinopteri; Neopterygii; Teleostei; Osteoglossocephalai; Clupeocephala; Otomorpha; Ostariophysi; Otophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Cyprininae; Sinocyclocheilus
			
			
							NCBI Taxonomy ID
					
		
	
									is Taxon B an Infraspecies?
					
		
																													No
					
	
            GENOTYPIC CHANGE
            	            
	                
	
									Generic Gene Name
					
		
																			EDAR
					
	
									Synonyms
					
		
																			DL; ED3; ED5; ED1R; EDA3; HRM1; EDA1R; ECTD10A; ECTD10B; EDA-A1R
					
	
									String
					
		
	
									Sequence Similarities
					
		
																				-
					
	
							GO - Molecular Function
						
						
																														GO:0004888 : transmembrane signaling receptor activity
							
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							GO - Biological Process
						
						
																														GO:0030154 : cell differentiation
							
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							GO - Cellular Component
						
						
																														GO:0016021 : integral component of membrane
							
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									UniProtKB
																							
Homo sapiens
						
					Homo sapiens
									Presumptive Null
					
		
	
									Molecular Type
					
		
	
									Aberration Type
					
		
	
									Deletion Size
					
		
													-
					
	
									Molecular Details of the Mutation
					
		
													Deletion of a large part of the EDAR2 coding region.
					
	
									Experimental Evidence
					
		
	
				Authors
	
	
									Yang J; Chen X; Bai J; Fang D; Qiu Y; Jiang W; Yuan H; Bian C; et al.
									
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							Abstract
					
		
																			An emerging cavefish model, the cyprinid genus Sinocyclocheilus, is endemic to the massive southwestern karst area adjacent to the Qinghai-Tibetan Plateau of China. In order to understand whether orogeny influenced the evolution of these species, and how genomes change under isolation, especially in subterranean habitats, we performed whole-genome sequencing and comparative analyses of three species in this genus, S. grahami, S. rhinocerous and S. anshuiensis. These species are surface-dwelling, semi-cave-dwelling and cave-restricted, respectively.
The assembled genome sizes of S. grahami, S. rhinocerous and S. anshuiensis are 1.75 Gb, 1.73 Gb and 1.68 Gb, respectively. Divergence time and population history analyses of these species reveal that their speciation and population dynamics are correlated with the different stages of uplifting of the Qinghai-Tibetan Plateau. We carried out comparative analyses of these genomes and found that many genetic changes, such as gene loss (e.g. opsin genes), pseudogenes (e.g. crystallin genes), mutations (e.g. melanogenesis-related genes), deletions (e.g. scale-related genes) and down-regulation (e.g. circadian rhythm pathway genes), are possibly associated with the regressive features (such as eye degeneration, albinism, rudimentary scales and lack of circadian rhythms), and that some gene expansion (e.g. taste-related transcription factor gene) may point to the constructive features (such as enhanced taste buds) which evolved in these cave fishes.
As the first report on cavefish genomes among distinct species in Sinocyclocheilus, our work provides not only insights into genetic mechanisms of cave adaptation, but also represents a fundamental resource for a better understanding of cavefish biology.
					
	The assembled genome sizes of S. grahami, S. rhinocerous and S. anshuiensis are 1.75 Gb, 1.73 Gb and 1.68 Gb, respectively. Divergence time and population history analyses of these species reveal that their speciation and population dynamics are correlated with the different stages of uplifting of the Qinghai-Tibetan Plateau. We carried out comparative analyses of these genomes and found that many genetic changes, such as gene loss (e.g. opsin genes), pseudogenes (e.g. crystallin genes), mutations (e.g. melanogenesis-related genes), deletions (e.g. scale-related genes) and down-regulation (e.g. circadian rhythm pathway genes), are possibly associated with the regressive features (such as eye degeneration, albinism, rudimentary scales and lack of circadian rhythms), and that some gene expansion (e.g. taste-related transcription factor gene) may point to the constructive features (such as enhanced taste buds) which evolved in these cave fishes.
As the first report on cavefish genomes among distinct species in Sinocyclocheilus, our work provides not only insights into genetic mechanisms of cave adaptation, but also represents a fundamental resource for a better understanding of cavefish biology.
				Additional References
	
	
            RELATED GEPHE
        
	
					   		Related Genes
					
					
													No matches found.
											
				
								Related Haplotypes
					
					
				
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					Deleterious mutations in the EDAR1 gene also.
				
			
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