GEPHE SUMMARY Print
Gephebase Gene
Entry Status
Published
GepheID
GP00000527
Main curator
Martin
PHENOTYPIC CHANGE
Trait Category
Trait
Trait State in Taxon A
Gallus gallus
Trait State in Taxon B
Gallus gallus - Frizzle Feather
Ancestral State
Taxon A
Taxonomic Status
Taxon A
Latin Name
Common Name
chicken
Synonyms
Gallus gallus domesticus; chicken; bantam; chickens
Rank
species
Lineage
Show more ... pha; Tetrapoda; Amniota; Sauropsida; Sauria; Archelosauria; Archosauria; Dinosauria; Saurischia; Theropoda; Coelurosauria; Aves; Neognathae; Galloanserae; Galliformes; Phasianidae; Phasianinae; Gallus
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Latin Name
Common Name
chicken
Synonyms
Gallus gallus domesticus; chicken; bantam; chickens
Rank
species
Lineage
Show more ... pha; Tetrapoda; Amniota; Sauropsida; Sauria; Archelosauria; Archosauria; Dinosauria; Saurischia; Theropoda; Coelurosauria; Aves; Neognathae; Galloanserae; Galliformes; Phasianidae; Phasianinae; Gallus
NCBI Taxonomy ID
is Taxon B an Infraspecies?
Yes
Taxon B Description
Gallus gallus - Frizzle Feather
GENOTYPIC CHANGE
Generic Gene Name
Krt6a
Synonyms
K6A; MK6; MK6a; CK-6A; K6[a]; Krt2-; mK6[a; Krt2-6; mK6[a]; Krt2-6a; Krt2-6c; 2310016L08Rik; Ker2; Krt6
Sequence Similarities
Belongs to the intermediate filament family.
GO - Molecular Function
-
UniProtKB
Mus musculus
GenebankID or UniProtKB
Presumptive Null
No
Molecular Type
Aberration Type
Deletion Size
10-99 bp
Molecular Details of the Mutation
69bp deletion partially overlapping with exon 5
Experimental Evidence
Authors
Ng CS; Wu P; Foley J; Foley A; McDonald ML; Juan WT; Huang CJ; Lai YT; et al. ... show more
Abstract
Feathers have complex forms and are an excellent model to study the development and evolution of morphologies. Existing chicken feather mutants are especially useful for identifying genetic determinants of feather formation. This study focused on the gene F, underlying the frizzle feather trait that has a characteristic curled feather rachis and barbs in domestic chickens. Our developmental biology studies identified defects in feather medulla formation, and physical studies revealed that the frizzle feather curls in a stepwise manner. The frizzle gene is transmitted in an autosomal incomplete dominant mode. A whole-genome linkage scan of five pedigrees with 2678 SNPs revealed association of the frizzle locus with a keratin gene-enriched region within the linkage group E22C19W28_E50C23. Sequence analyses of the keratin gene cluster identified a 69 bp in-frame deletion in a conserved region of KRT75, an α-keratin gene. Retroviral-mediated expression of the mutated F cDNA in the wild-type rectrix qualitatively changed the bending of the rachis with some features of frizzle feathers including irregular kinks, severe bending near their distal ends, and substantially higher variations among samples in comparison to normal feathers. These results confirmed KRT75 as the F gene. This study demonstrates the potential of our approach for identifying genetic determinants of feather forms.
Additional References
EXTERNAL LINKS
COMMENTS
https://omia.org/OMIA000394/9031/ @Parallelism
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