In ovo thyroxine exposure alters later UVS cone loss in juvenile rainbow trout

Jason C Raine1, Allison B Coffin, Craig W Hawryshyn

  • 1Department of Biology, Queen's University, Kingston, ON K7L 3N6, Canada.

Insights

Enhanced thyroid hormone (TH) levels in rainbow trout eggs significantly impact later retinal development, causing premature loss of ultraviolet-sensitive (UVS) cones and altered opsin expression. This highlights the critical role of early thyroid hormone exposure in photoreceptor ontogeny.

Area of Science:

  • Developmental Biology
  • Neuroscience
  • Endocrinology

Background:

  • Thyroid hormones (THs) are crucial for vertebrate neural development and photoreceptor differentiation.
  • Rainbow trout exhibit natural cone cell degeneration during development, regulated by thyroxine (T4).
  • Thyroid hormone receptor beta (TRβ) plays a role in photoreceptor development.

Purpose of the Study:

  • To investigate the influence of enhanced in ovo T4 on opsin expression and cone development in rainbow trout.
  • To determine if altered embryonic TH exposure affects later T4-induced short-wavelength-sensitive (SWS1) opsin transcript downregulation and ultraviolet-sensitive (UVS) cone loss.

Main Methods:

  • Rainbow trout embryos were treated with enhanced T4 in ovo.
  • Juvenile trout from these embryos were subsequently challenged with exogenous T4 at the parr stage.
  • Opsin transcript levels (SWS1, LWS) and UVS cone presence were analyzed.

Main Results:

  • In ovo TH manipulation upregulated SWS1 and long-wavelength-sensitive (LWS) opsin transcripts in pre-hatch trout retinas.
  • Juveniles with in ovo T4 treatment showed greatly reduced SWS1 expression and premature UVS cone loss after exogenous T4 exposure.
  • Altered embryonic TH levels affected TRβ expression.

Conclusions:

  • Early embryonic exposure to thyroid hormones has lasting effects on retinal development and photoreceptor subtype distribution in rainbow trout.
  • Changes in egg TH levels can significantly influence later developmental processes, particularly concerning cone cell fate and opsin expression.

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