Unraveling the transcriptomic landscape of eye migration and visual adaptations during flatfish metamorphosis

Abstract Flatfish undergo a remarkable metamorphosis from symmetrical pelagic larvae to fully asymmetrical benthic juveniles. The most distinctive features of this transformation is the migration of one eye. The molecular role of thyroid hormone in the metamorphosis process in flatfishes is well est...

Full description

Bibliographic Details
Published in:Communications Biology
Main Authors: Laura Guerrero-Peña, Paula Suarez-Bregua, Lucía Sánchez-Ruiloba, Luis Méndez-Martínez, Pablo García-Fernández, Ricardo Tur, Juan J. Tena, Josep Rotllant
Format: Article in Journal/Newspaper
Language:English
Published: Nature Portfolio 2024
Subjects:
Online Access:https://doi.org/10.1038/s42003-024-05951-x
https://doaj.org/article/460883d311f44718aebe38b25c2e2c0d
Description
Summary:Abstract Flatfish undergo a remarkable metamorphosis from symmetrical pelagic larvae to fully asymmetrical benthic juveniles. The most distinctive features of this transformation is the migration of one eye. The molecular role of thyroid hormone in the metamorphosis process in flatfishes is well established. However, the regulatory network that facilitates eye movement remains enigmatic. This paper presents a morphological investigation of the metamorphic process in turbot eyes, using advanced imaging techniques and a global view of gene expression. The study covers migrant and non-migrant eyes and aims to identify the genes that are active during ocular migration. Our transcriptomic analysis shows a significant up-regulation of immune-related genes. The analysis of eye-specific genes reveals distinct patterns during the metamorphic process. Myosin is highlighted in the non-migrant eye, while ependymin is highlighted in the migrant eye, possibly involved in optic nerve regeneration. Furthermore, a potential association between the alx3 gene and cranial restructuring has been identified. Additionally, it confirmed simultaneous adaptation to low light in both eyes, as described by changes in opsins expression during the metamorphic process. The study also revealed that ocular migration activates systems asynchronously in both eyes, providing insight into multifaceted reorganization processes during metamorphosis of flatfish.