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- Be0a93361ed6fc68d4ad19f225d90d425 date_retrieved "2012-09-17" @default.
- Be0a93361ed6fc68d4ad19f225d90d425 external_class "VHOG:0000310" @default.
- Be0a93361ed6fc68d4ad19f225d90d425 ontology "VHOG" @default.
- Be0a93361ed6fc68d4ad19f225d90d425 source "ISBN:978-0198566694 Schmidt-Rhaesa A, The evolution of organ systems (2007) p.210, DOI:10.1371/journal.pone.0024019 Zheng W, Wang Z, Collins JE, Andrews RM, Stemple D, Gong Z, Comparative transcriptome analyses indicate molecular homology of zebrafish swimbladder and Mammalian lung. PLoS One (2011)" @default.
- Be0a93361ed6fc68d4ad19f225d90d425 source "http://bgee.unil.ch/" @default.
- Be0a93361ed6fc68d4ad19f225d90d425 type Axiom @default.
- Be0a93361ed6fc68d4ad19f225d90d425 annotatedProperty UBPROP_0000003 @default.
- Be0a93361ed6fc68d4ad19f225d90d425 annotatedSource UBERON_0006860 @default.
- Be0a93361ed6fc68d4ad19f225d90d425 annotatedTarget "Lungs had already developed as paired ventral pockets from the intestine in the ancestor of Osteognathostomata. (...) In actinopterygian fishes, apart from Cladistia, the ventral intestinal pocket migrates dorsally and becomes the swim-bladder, a mainly hydrostatical organ (reference 1); Comparative transcriptome analyses indicate molecular homology of zebrafish swimbladder and Mammalian lung (reference 2).[well established][VHOG]" @default.