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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.
Abstract:
Thyroid hormones (THs) play a vital role in vertebrate neural development, and, together with the beta isoform of the thyroid hormone receptor (TRβ), the development and differentiation of cone photoreceptors in the vertebrate retina. Rainbow trout undergo a natural process of cone cell degeneration during development and this change in photoreceptor distribution is regulated by thyroxine (T4; a thyroid hormone). In an effort to further understand the role of T4 in photoreceptor ontogeny and later developmental changes in photoreceptor subtype distribution, the influence of enhanced in ovo T4 content on the onset of opsin expression and cone development was examined. Juvenile trout reared from the initial in ovo-treated embryos were challenged with exogenous T4 at the parr stage of development to determine if altered embryonic exposure to yolk THs would affect later T4-induced short-wavelength-sensitive (SWS1) opsin transcript downregulation and ultraviolet-sensitive (UVS) cone loss. In ovo TH manipulation led to upregulation of both SWS1 and long-wavelength-sensitive (LWS) opsin transcripts in the pre-hatch rainbow trout retina and to changes in the relative expression of TRβ. After 7 days of exposure to T4, juveniles that were also treated with T4 in ovo had greatly reduced SWS1 expression levels and premature loss of UVS cones relative to T4-treated juveniles raised from untreated eggs. These results suggest that changes in egg TH levels can have significant consequences much later in development, particularly in the retina.
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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