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Updated: Jul 6, 2025

Author Spotlight: Exploring Retinal Regeneration Mechanisms in the Xenopus Frog
Published on: October 13, 2023
Bilateral Retinofugal Pathfinding Impairments Limit Behavioral Compensation in Near-Congenital One-Eyed Xenopus
Michael Forsthofer1,2, Clayton Gordy3,2, Meghna Kolluri3
1Faculty of Biology, Ludwig-Maximilians-University Munich, Planegg 82152, Germany michael.forsthofer@tum.de.
Abstract:
To generate a coherent visual percept, information from both eyes must be appropriately transmitted into the brain, where binocular integration forms the substrate for visuomotor behaviors. To establish the anatomical substrate for binocular integration, the presence of bilateral eyes and interaction of both optic nerves during retinotectal development play a key role. However, the extent to which embryonic monocularly derived visual circuits can convey visuomotor behaviors is unknown. In this study, we assessed the retinotectal anatomy and visuomotor performance of embryonically generated one-eyed tadpoles. In one-eyed animals, the axons of retinal ganglion cells from the singular remaining eye exhibited striking irregularities in their central projections in the brain, generating a noncanonical ipsilateral retinotectal projection. This data is indicative of impaired pathfinding abilities. We further show that these novel projections are correlated with an impairment of behavioral compensation for the loss of one eye.

