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Updated: Sep 6, 2026

Genotyping of Sea Anemone during Early Development
Published on: May 13, 2019
Abalone genomics reveals an ancient asymmetry axis and the multifunctionality of the mantle
Xiaotong Wang1,2,3, Chunhui Li2, Peidong Xin2
1School of Fisheries, Ludong University, Yantai, 264025, China.
Abstract:
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, Haliotis iris. Integrating comparative genomics, histoembryology, and molecular assays, we identify a conserved regulatory association between the long non-coding RNA lncRNA1 and pitx that is associated with asymmetric mantle development. In H. iris, this association is supported by chromatin-contact evidence and exploratory data suggesting a possible miRNA-associated post-transcriptional component. Furthermore, we identify a wnt-mitf-tyr framework for melanogenesis and show that the mantle is the primary site of melanin synthesis. Concurrently, we identify mantle-enriched prestin genes 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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