The genetic basis of a recent transition to live-bearing in marine snails.

Stankowski, Sean; Zagrodzka, Zuzanna B; Garlovsky, Martin D; Pal, Arka; Shipilina, Daria; Castillo, Diego Garcia; Lifchitz, Hila; Le Moan, Alan et al. · Science · 2024

basic_science · Level V

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Abstract

Key innovations are fundamental to biological diversification, but their genetic basis is poorly understood. A recent transition from egg-laying to live-bearing in marine snails (<i>Littorina</i> spp.) provides the opportunity to study the genetic architecture of an innovation that has evolved repeatedly across animals. Individuals do not cluster by reproductive mode in a genome-wide phylogeny, but local genealogical analysis revealed numerous small genomic regions where all live-bearers carry the same core haplotype. Candidate regions show evidence for live-bearer-specific positive selection and are enriched for genes that are differentially expressed between egg-laying and live-bearing reproductive systems. Ages of selective sweeps suggest that live-bearer-specific alleles accumulated over more than 200,000 generations. Our results suggest that new functions evolve through the recruitment of many alleles rather than in a single evolutionary step.

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