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September 28, 2025Molecular Ecology2 citations

Doubled Genomes, Divergent Fates: Genomic Insights Into Diversification in an Allotetraploid Cavefish

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SMSantiago Montero‐MendietaYWYuwei WangCWChongnv Wang

Key Points

  • The study found significant population structure in Sinocyclocheilus microphthalmus, indicating allopatric divergence.
  • Seven single outlier clusters were identified, reflecting local processes driving diversity and genomic differentiation.
  • Vision-related genes exhibited relaxed selection due to adaptation to cave darkness, while other loci showed positive selection.
  • Allopolyploidy was shown to promote divergence through asymmetric evolution among homoeologs and subgenome-specific patterns.

Abstract

ABSTRACT Cave environments impose unique challenges that drive remarkable genetic and phenotypic changes in cave‐dwelling organisms. In this study, we investigated the genomic basis of adaptation in the small eye golden‐line fish ( Sinocyclocheilus microphthalmus ), an allotetraploid cavefish endemic to Guangxi, China. Using whole‐genome resequencing data from 47 individuals across six cave locations, we examined how neutral and selective forces influence diversification. Our analyses uncovered significant population structure indicative of allopatric divergence, along with evidence of locus‐specific selection contributing to genomic differentiation. We identified seven single outlier clusters (SOCs), each tied to the divergence of specific populations, underscoring the role of local processes in driving diversity. Genes associated with vision showed relaxed selection, likely reflecting adaptation to darkness, while positive selection on other loci revealed additional functional shifts. Notably, allopolyploidy was found to fuel divergence through subgenome‐specific patterns and asymmetric evolution within SOCs and among homoeologs. Taken together, these findings provide valuable insights into mechanisms of cave evolution and illustrate how allotetraploid genomes can facilitate diversification, potentially contributing to speciation in extreme environments.

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Cite This Study

Montero‐Mendieta et al. (2025) studied this question.

synapsesocial.com/papers/68d9052941e1c178a14f584dhttps://doi.org/10.1111/mec.70118
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