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February 20, 2026PLoS Biology0 citationsOpen Access

Light intensity and opsin sensitivity shape the morphology of cone photoreceptor outer segments

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JXJingjin XuZCZihan ChangWDWei Deng

Key Points

  • This study aims to investigate how light intensity and opsin sensitivity affect the morphology of cone photoreceptor outer segments.
  • Examined distinct cone types in zebrafish and their outer segment morphologies.
  • Modulated opsin expression to analyze its effect on OS morphology.
  • Altered light intensity through environmental changes to study its influence on OS length.
  • Proposed a model for the regulation of cone outer segment morphology based on findings.
  • Cone outer segment morphology correlates with opsin wavelength sensitivity, with longer opsin types leading to elongated OS.
  • Light intensity changes impact OS morphology, demonstrating plasticity in response to environmental factors.
  • Morphological alterations are dependent on long-term neural activity, indicating sustained changes rather than transient adjustments.

Abstract

Regulation of neural cell morphology remains a fundamental question in neuroscience. Photoreceptor cells, a specialized class of neurons capable of initiating the phototransduction cascade, exhibit distinct structural and morphological characteristics. While the structural and morphological differences between rod and cone photoreceptors have been extensively studied, the variability in the morphology of cone outer segments (OS) remains largely unexplored. Zebrafish possess four distinct cone types, each displaying unique OS morphologies. By modulating opsin expression across cone types, we reveal that the morphology of the cone OS correlates directly with the wavelength sensitivity of the expressed opsins, with cones expressing longer wavelength-sensitive opsins exhibiting elongated OS. This regulatory mechanism is conserved across various vertebrates. Furthermore, we show that alterations in light intensity—induced by ectopic lipid droplet formation in the light path or by changing the environment light intensity—can also modulate OS morphology. Notably, this morphological plasticity is not transient, but rather dependent on long-term neural activity. Based on these findings, we propose a model for the regulation of cone OS length. Our data suggest that both opsin sensitivity and light intensity shape cone OS morphology through long-term neural activity, providing critical insights into neural plasticity in these light-sensitive neurons.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6997fa6dad1d9b11b34539fchttps://doi.org/10.1371/journal.pbio.3003654
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