Abstract
The molecular mechanisms underlying major phenotypic changes that have evolved repeatedly in nature are generally unknown. Pelvic loss in different natural populations of threespine stickleback fish has occurred through regulatory mutations deleting a tissue-specific enhancer of the Pituitary homeobox transcription factor 1 (Pitx1) gene. The high prevalence of deletion mutations at Pitx1 may be influenced by inherent structural features of the locus. Although Pitx1 null mutations are lethal in laboratory animals, Pitx1 regulatory mutations show molecular signatures of positive selection in pelvic-reduced populations. These studies illustrate how major expression and morphological changes can arise from single mutational leaps in natural populations, producing new adaptive alleles via recurrent regulatory alterations in a key developmental control gene.
MeSH Terms
Alleles
Animals
Biological Evolution
Chromosome Fragile Sites
Chromosome Mapping
Crosses, Genetic
DNA, Intergenic
Enhancer Elements, Genetic
Fish Proteins/genetics
Molecular Sequence Data
Mutation
Paired Box Transcription Factors/genetics
Pelvis/anatomy & histology
Selection, Genetic
Sequence Deletion
Smegmamorpha/anatomy & histology,genetics,growth & development
Chemicals
DNA, Intergenic
Fish Proteins
Paired Box Transcription Factors
homeobox protein PITX1
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Chan Yingguang Frank
Department of Developmental Biology and Howard Hughes Medical Institute, Stanford University, Stanford, CA 94305, USA.
Marks Melissa E
Jones Felicity C
Villarreal Guadalupe
Shapiro Michael D
Brady Shannon D
Southwick Audrey M
Absher Devin M
Grimwood Jane
Schmutz Jeremy
Myers Richard M
Petrov Dmitri
Jónsson Bjarni
Schluter Dolph
Bell Michael A
Kingsley David M
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