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  3. Molecular mechanisms of Eda-mediated adaptation to freshwater in threespine stickleback.
 

Molecular mechanisms of Eda-mediated adaptation to freshwater in threespine stickleback.

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BORIS DOI
10.48350/182651
Publisher DOI
10.1111/mec.16989
PubMed ID
37194086
Description
A main goal of evolutionary biology is to understand the genetic basis of adaptive evolution. Although the genes that underlie some adaptive phenotypes are now known, the molecular pathways and regulatory mechanisms mediating the phenotypic effects of those genes often remain a black box. Unveiling this black box is necessary to fully understand the genetic basis of adaptive phenotypes, and to understand why particular genes might be used during phenotypic evolution. Here, we investigated which genes and regulatory mechanisms are mediating the phenotypic effects of the Eda haplotype, a locus responsible for the loss of lateral plates and changes in the sensory lateral line of freshwater threespine stickleback (Gasterosteus aculeatus) populations. Using a combination of RNAseq and a cross design that isolated the Eda haplotype on a fixed genomic background, we found that the Eda haplotype affects both gene expression and alternative splicing of genes related to bone development, neuronal development and immunity. These include genes in conserved pathways, like the BMP, netrin and bradykinin signalling pathways, known to play a role in these biological processes. Furthermore, we found that differentially expressed and differentially spliced genes had different levels of connectivity and expression, suggesting that these factors might influence which regulatory mechanisms are used during phenotypic evolution. Taken together, these results provide a better understanding of the mechanisms mediating the effects of an important adaptive locus in stickleback and suggest that alternative splicing could be an important regulatory mechanism mediating adaptive phenotypes.
Date of Publication
2025-08
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
000 Computer science, knowledge & systems
Keyword(s)
Eda
alternative splicing genetics of adaptation lateral line lateral plates threespine stickleback
Language(s)
en
Contributor(s)
Rodríguez Ramírez, Carlos Ernesto
Institut für Ökologie und Evolution (IEE)
Hiltbrunner, Melanie
Institut für Ökologie und Evolution (IEE)
Saladin, Verena
Institut für Ökologie und Evolution (IEE)
Walker, Stephanie
Institut für Ökologie und Evolution (IEE)
Urrutia, Araxi
Peichel, Catherineorcid-logo
Institut für Ökologie und Evolution (IEE)
Additional Credits
Institut für Ökologie und Evolution (IEE)
Series
Molecular Ecology
Publisher
Wiley-Blackwell
ISSN
0962-1083
Access(Rights)
open.access
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