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Genomic islands of speciation separate cichlid ecomorphs in an East African crater lake.


ABSTRACT: The genomic causes and effects of divergent ecological selection during speciation are still poorly understood. Here we report the discovery and detailed characterization of early-stage adaptive divergence of two cichlid fish ecomorphs in a small (700 meters in diameter) isolated crater lake in Tanzania. The ecomorphs differ in depth preference, male breeding color, body shape, diet, and trophic morphology. With whole-genome sequences of 146 fish, we identified 98 clearly demarcated genomic "islands" of high differentiation and demonstrated the association of genotypes across these islands with divergent mate preferences. The islands contain candidate adaptive genes enriched for functions in sensory perception (including rhodopsin and other twilight-vision-associated genes), hormone signaling, and morphogenesis. Our study suggests mechanisms and genomic regions that may play a role in the closely related mega-radiation of Lake Malawi.

SUBMITTER: Malinsky M 

PROVIDER: S-EPMC4700518 | biostudies-literature | 2015 Dec

REPOSITORIES: biostudies-literature

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Genomic islands of speciation separate cichlid ecomorphs in an East African crater lake.

Malinsky Milan M   Challis Richard J RJ   Tyers Alexandra M AM   Schiffels Stephan S   Terai Yohey Y   Ngatunga Benjamin P BP   Miska Eric A EA   Durbin Richard R   Genner Martin J MJ   Turner George F GF  

Science (New York, N.Y.) 20151201 6267


The genomic causes and effects of divergent ecological selection during speciation are still poorly understood. Here we report the discovery and detailed characterization of early-stage adaptive divergence of two cichlid fish ecomorphs in a small (700 meters in diameter) isolated crater lake in Tanzania. The ecomorphs differ in depth preference, male breeding color, body shape, diet, and trophic morphology. With whole-genome sequences of 146 fish, we identified 98 clearly demarcated genomic "isl  ...[more]

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