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Abalone genomics reveals an ancient asymmetry axis and the multifunctionality of the mantle

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

Science AdvancesLast synced 9/6/2026Status: syncedPMID: 42696593 pmidDOI: 10.1126/sciadv.aeb8392

Gastropod diversification represents one of the most spectacular evolutionary radiations, underpinned by a fundamentally asymmetric body plan and diverse pigmentation patterns. To understand the genetic underpinnings of these cardinal traits, we constructed a chromosome-level genome assembly for the rainbow abalone,. Integrating comparative genomics, histoembryology, and molecular assays, we identify a conserved regulatory association between the long non-coding RNAandthat is associated with asymmetric mantle development. In, this association is supported by chromatin-contact evidence and exploratory data suggesting a possible miRNA-associated post-transcriptional component. Furthermore, we identify aframework for melanogenesis and show that the mantle is the primary site of melanin synthesis. Concurrently, we identify mantle-enrichedgenes that are vibration-responsive, consistent with a possible sensory specialization of the mantle. These findings provide molecular insight into asymmetry, pigmentation, and mantle multifunctionality in gastropods.

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