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http://purl.uniprot.org/citations/27385009http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/27385009http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/27385009http://www.w3.org/2000/01/rdf-schema#comment"The segmental pattern of somites is generated by sequential conversion of the temporal periodicity provided by the molecular clock. Whereas the basic structure of this clock is conserved among different species, diversity also exists, especially in terms of the molecular network. The temporal periodicity is subsequently converted into the spatial pattern of somites, and Mesp2 plays crucial roles in this conversion in the mouse. However, it remains unclear whether Mesp genes play similar roles in other vertebrates. In this study, we generated zebrafish mutants lacking all four zebrafish Mesp genes by using TALEN-mediated genome editing. Contrary to the situation in the mouse Mesp2 mutant, in the zebrafish Mesp quadruple mutant embryos the positions of somite boundaries were clearly determined and morphological boundaries were formed, although their formation was not completely normal. However, each somite was caudalized in a similar manner to the mouse Mesp2 mutant, and the superficial horizontal myoseptum and lateral line primordia were not properly formed in the quadruple mutants. These results clarify the conserved and species-specific roles of Mesp in the link between the molecular clock and somite morphogenesis."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.org/dc/terms/identifier"doi:10.1242/dev.133173"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Yamamoto T."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Yamamoto T."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Takada S."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Takada S."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Yabe T."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Yabe T."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Hoshijima K."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/author"Hoshijima K."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/date"2016"xsd:gYear
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/date"2016"xsd:gYear
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/name"Development"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/name"Development"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/pages"2842-2852"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/pages"2842-2852"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/title"Quadruple zebrafish mutant reveals different roles of Mesp genes in somite segmentation between mouse and zebrafish."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/title"Quadruple zebrafish mutant reveals different roles of Mesp genes in somite segmentation between mouse and zebrafish."xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/volume"143"xsd:string
http://purl.uniprot.org/citations/27385009http://purl.uniprot.org/core/volume"143"xsd:string
http://purl.uniprot.org/citations/27385009http://www.w3.org/2004/02/skos/core#exactMatchhttp://purl.uniprot.org/pubmed/27385009
http://purl.uniprot.org/citations/27385009http://www.w3.org/2004/02/skos/core#exactMatchhttp://purl.uniprot.org/pubmed/27385009
http://purl.uniprot.org/citations/27385009http://xmlns.com/foaf/0.1/primaryTopicOfhttps://pubmed.ncbi.nlm.nih.gov/27385009