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September 23, 2025Evolution4 citationsOpen Access

A pangenomic approach reveals the sources of genetic variation fueling the rapid radiation of Capuchino Seedeaters

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MRMaría RecuerdaSKSimón KraemerJRJonas Rafael Rodrigues Rosoni

Key Points

  • Findings highlight how small genetic changes, rather than larger mutations, drive rapid plumage evolution.
  • The analysis identified SNPs and indels as primary contributors to coloration differences in these birds.
  • A notable 55 bp deletion linked to melanin content reveals specific structural variants influencing traits.
  • The study utilized a comprehensive pangenome to enhance understanding of genetic divergence in seven species.

Abstract

Abstract The search for the genetic basis of phenotypes has primarily focused on single nucleotide polymorphisms, often overlooking structural variants (SVs). SVs can significantly affect gene function, but detecting and characterizing them is challenging, even with long-read sequencing. Moreover, traditional single-reference methods can fail to capture many genetic variants. Using long-reads, we generated a Capuchino Seedeater (Sporophila) pangenome, including 16 individuals from seven species, to investigate how SVs contribute to species and coloration differences. Leveraging this pangenome, we mapped short-read data from 127 individuals, genotyped variants identified in the pangenome graph and subsequently perform FST scans and genome-wide association studies. Species divergence primarily arises from SNPs and indels ( 50 bp) in non-coding regions of melanin-related genes, as larger SVs rarely overlap with divergence peaks. One exception was a 55 bp deletion near the OCA2 and HERC2 genes, associated with feather pheomelanin content. These findings support the hypothesis that the reshuffling of small regulatory alleles, rather than larger species-specific mutations, accelerated plumage evolution leading to prezygotic isolation in Capuchinos.

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Cite This Study

Recuerda et al. (2025) studied this question.

synapsesocial.com/papers/68d4759031b076d99fa6d66fhttps://doi.org/10.1093/evolut/qpaf188
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