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October 8, 2025Contributions to Zoology3 citationsOpen Access

Distribution of the Deep-Sea Limpet Genus Pyropelta in the Northwestern Pacific, with the Description of a New Species

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CCChong ChenMTMiwako TsudaHWHiromi Watanabe

Key Points

  • Finding a new species greatly expands the known distribution of Pyropelta in the northwestern Pacific region, enhancing biodiversity understanding.
  • Molecular barcoding of the mitochondrial cytochrome c oxidase subunit I gene revealed distinct genetic characteristics of the new species.
  • The study indicates that pyropeltids may alter their shell shape based on substrate, challenging existing taxonomic classifications.
  • Collecting specimens from three vents and two seeps provided valuable insights into the habitat preferences of this unique limpet genus.

Abstract

Abstract Hydrothermal vents and other chemosynthetic ecosystems are island-like oases in the deep ocean where microbial primary production supports an unusually high biomass. The small lepetelloidean family Pyropeltidae, with its sole genus Pyropelta containing about 10 described species, specialises in these systems. In the northwestern Pacific two species have been named around Japan, but their ranges have remained uncertain as shells of Pyropelta are typically corroded and difficult to identify morphologically. Here, we collected Pyropelta from three vents and two seeps in the northwestern Pacific, and assess the distribution of each species using molecular barcoding of the mitochondrial cytochrome c oxidase subunit I ( COI ) gene. As a result, we greatly extend the known distribution ranges of the two known northwestern Pacific species P. yamato and P. ryukyuensis . A lineage found in the Off Hatsushima seep in Sagami Bay was genetically distinct from the two described species and is named as Pyropelta artemis sp. nov. This new species inhabits a variety of substrates including tubes of siboglinid polychaetes as well as snail and mussel shells, and is noteworthy in displaying a great variability in its shell form because the aperture is constricted by substrate morphology. Our findings show that pyropeltids can also ‘shape-shift’ according to the substrate like many other limpet-formed gastropods, which excludes shell shape as a broadly useful taxonomic character in this family.

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Cite This Study

Chen et al. (2025) studied this question.

synapsesocial.com/papers/68e6d7971ffa7aa7d63d17aehttps://doi.org/10.1163/18759866-bja10083
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