GEPHE SUMMARY Print
Gephebase Gene
Entry Status
Published
GepheID
GP00000254
Main curator
Martin
PHENOTYPIC CHANGE
Trait Category
Trait State in Taxon A
Gasterosteus aculeatus (marine)
Trait State in Taxon B
Gasterosteus aculeatus (freshwater)
Ancestral State
Taxon A
Taxonomic Status
Taxon A
Common Name
three-spined stickleback
Synonyms
three-spined stickleback; three spined stickleback; Gasterosteus aculeatus Linnaeus, 1758
Rank
species
Lineage
Show more ... a; Euteleosteomorpha; Neoteleostei; Eurypterygia; Ctenosquamata; Acanthomorphata; Euacanthomorphacea; Percomorphaceae; Eupercaria; Perciformes; Cottioidei; Gasterosteales; Gasterosteidae; Gasterosteus
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Common Name
three-spined stickleback
Synonyms
three-spined stickleback; three spined stickleback; Gasterosteus aculeatus Linnaeus, 1758
Rank
species
Lineage
Show more ... a; Euteleosteomorpha; Neoteleostei; Eurypterygia; Ctenosquamata; Acanthomorphata; Euacanthomorphacea; Percomorphaceae; Eupercaria; Perciformes; Cottioidei; Gasterosteales; Gasterosteidae; Gasterosteus
NCBI Taxonomy ID
is Taxon B an Infraspecies?
Yes
Taxon B Description
Gasterosteus aculeatus (freshwater)
GENOTYPIC CHANGE
Generic Gene Name
Eda
Synonyms
Ta; Ed1; HED; EDA1; XLHED; tabby; Eda-A1; Eda-A2; Tnlg7c
Sequence Similarities
Belongs to the tumor necrosis factor family.
UniProtKB
Mus musculus
GenebankID or UniProtKB
Presumptive Null
Molecular Type
Aberration Type
Molecular Details of the Mutation
large haplotype- includes a T-> G regulatory change that affect expression based on differential responsiveness to Wnt signaling
Experimental Evidence
Authors
Colosimo PF; Hosemann KE; Balabhadra S; Villarreal G; Dickson M; Grimwood J; Schmutz J; Myers RM; et al. ... show more
Abstract
Major phenotypic changes evolve in parallel in nature by molecular mechanisms that are largely unknown. Here, we use positional cloning methods to identify the major chromosome locus controlling armor plate patterning in wild threespine sticklebacks. Mapping, sequencing, and transgenic studies show that the Ectodysplasin (EDA) signaling pathway plays a key role in evolutionary change in natural populations and that parallel evolution of stickleback low-plated phenotypes at most freshwater locations around the world has occurred by repeated selection of Eda alleles derived from an ancestral low-plated haplotype that first appeared more than two million years ago. Members of this clade of low-plated alleles are present at low frequencies in marine fish, which suggests that standing genetic variation can provide a molecular basis for rapid, parallel evolution of dramatic phenotypic change in nature.
RELATED GEPHE
Related Genes
Related Haplotypes
No matches found.
EXTERNAL LINKS
COMMENTS
Functional validation: comparison of enhancer reporter assays with T/C polymorphism. Behavioral phenotype in schooling ability verified in CMV:EDA transgenic fish
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