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May 31, 2026Molecular Ecology0 citationsOpen Access

Widespread Variation in Retinochrome Spectral Absorbance Across Scallop Phylogeny

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KMKyle E. McElroyAWAnna K. G. WardJAJorge A. Audino

Key Points

  • This research aims to explore the variation in retinochrome spectral absorbance across different scallop species and its ecological implications.
  • Investigated spectral variation and spatial expression of retinochrome in scallop retina
  • Compared retinochrome spectral absorption across six scallop species with varying ecological contexts
  • Characterized multiple amino acid sites affecting spectral tuning of the opsin.
  • Retinochrome is expressed alongside visual opsins in scallops, indicating its role in vision.
  • Considerable functional variation in spectral absorption was found across six scallop species, linked to different photic environments.
  • Multiple amino acid sites were identified as key contributors to the shifts in maximum wavelength sensitivity of retinochrome.

Abstract

ABSTRACT Vision is a two‐step process, including phototransduction initiated by a retinal‐bound opsin photopigment, and subsequent photopigment regeneration wherein the inactive state is restored. Because retinal isomerization, or changing of the molecular structural conformation, drives the activation of opsin photopigments, the reverse process is a necessary part of regeneration. In some animal lineages, a second opsin functions as a photoisomerase that converts retinal back to the isomer needed for the visual opsin, but very little is known about their spectral properties. We investigated spectral variation and spatial expression of scallop retinochrome, an opsin used for light‐driven regeneration of molluscan visual photopigments. We show that retinochrome is expressed in scallop retina, along with visual opsins, indicating a conserved role in supporting vision. We compared retinochrome spectral absorption across six species with different ecologies, revealing considerable functional variation possibly associated with photic environments. Finally, we characterized multiple amino acid sites contributing to spectral tuning—shifts in the specific maximally sensitive wavelength of light—of this opsin. These results reveal retinochrome as a functionally dynamic component of the scallop visual cycle that may be adapted to different photic environments across species and highlights spectral tuning in an ocular but otherwise non‐visual photopigment, which has been largely overlooked in studying the evolution of visual cycles.

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Cite This Study

McElroy et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd0845783ba022b6fc538https://doi.org/10.1111/mec.70390
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