GEPHE SUMMARY Print
Gephebase Gene
tan
Entry Status
Published
GepheID
GP00001099
Main curator
Martin
PHENOTYPIC CHANGE
Trait Category
Trait State in Taxon A
dark posterior male abdomen
Trait State in Taxon B
light posterior male abdomen
Ancestral State
Taxon A
Taxonomic Status
Taxon A
Common Name
-
Synonyms
Drosophila yakuba Burla, 1954
Rank
species
Lineage
Show more ... Brachycera; Muscomorpha; Eremoneura; Cyclorrhapha; Schizophora; Acalyptratae; Ephydroidea; Drosophilidae; Drosophilinae; Drosophilini; Drosophila; Sophophora; melanogaster group; melanogaster subgroup
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Common Name
-
Synonyms
-
Rank
species
Lineage
Show more ... Brachycera; Muscomorpha; Eremoneura; Cyclorrhapha; Schizophora; Acalyptratae; Ephydroidea; Drosophilidae; Drosophilinae; Drosophilini; Drosophila; Sophophora; melanogaster group; melanogaster subgroup
NCBI Taxonomy ID
is Taxon B an Infraspecies?
No
GENOTYPIC CHANGE
Mutation #1
Presumptive Null
No
Molecular Type
Aberration Type
SNP
Molecular Details of the Mutation
T272A - effect of the single mutation tested in reporter constructs
Experimental Evidence
Authors
Jeong S; Rebeiz M; Andolfatto P; Werner T; True J; Carroll SB
Abstract
Understanding the mechanisms underlying the morphological divergence of species is one of the central goals of evolutionary biology. Here, we analyze the genetic and molecular bases of the divergence of body pigmentation patterns between Drosophila yakuba and its sister species Drosophila santomea. We found that loss of pigmentation in D. santomea involved the selective loss of expression of the tan and yellow pigmentation genes. We demonstrate that tan gene expression was eliminated through the mutational inactivation of one specific tan cis-regulatory element (CRE) whereas the Tan protein sequence remained unchanged. Surprisingly, we identify three independent loss-of-function alleles of the tan CRE in the young D. santomea lineage. We submit that there is sufficient empirical evidence to support the general prediction that functional evolutionary changes at pleiotropic loci will most often involve mutations in their discrete, modular cis-regulatory elements.
Mutation #2
Presumptive Null
No
Molecular Type
Aberration Type
SNP
Molecular Details of the Mutation
C323A - effect of the single mutation tested in reporter constructs
Experimental Evidence
Authors
Jeong S; Rebeiz M; Andolfatto P; Werner T; True J; Carroll SB
Abstract
Understanding the mechanisms underlying the morphological divergence of species is one of the central goals of evolutionary biology. Here, we analyze the genetic and molecular bases of the divergence of body pigmentation patterns between Drosophila yakuba and its sister species Drosophila santomea. We found that loss of pigmentation in D. santomea involved the selective loss of expression of the tan and yellow pigmentation genes. We demonstrate that tan gene expression was eliminated through the mutational inactivation of one specific tan cis-regulatory element (CRE) whereas the Tan protein sequence remained unchanged. Surprisingly, we identify three independent loss-of-function alleles of the tan CRE in the young D. santomea lineage. We submit that there is sufficient empirical evidence to support the general prediction that functional evolutionary changes at pleiotropic loci will most often involve mutations in their discrete, modular cis-regulatory elements.
RELATED GEPHE
Related Haplotypes
2
EXTERNAL LINKS
COMMENTS
@SeveralMutationsWithEffect @SexualTrait
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