High prevalence of vaterite in sagittal otoliths causes hearing impairment in farmed fish

AbstractThe rapid growth of aquaculture raises questions about the welfare status of mass-produced species. Sagittal otoliths are primary hearing structures in the inner ear of all teleost (bony) fishes and are normally composed of aragonite, though abnormal vaterite replacement is sometimes seen in...

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Bibliographic Details
Main Authors: T Reimer, Tim Dempster, F Warren-Myers, AJ Jensen, SE Swearer
Format: Article in Journal/Newspaper
Language:unknown
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/10779/DRO/DU:24602361.v3
https://figshare.com/articles/journal_contribution/High_prevalence_of_vaterite_in_sagittal_otoliths_causes_hearing_impairment_in_farmed_fish/24602361
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Summary:AbstractThe rapid growth of aquaculture raises questions about the welfare status of mass-produced species. Sagittal otoliths are primary hearing structures in the inner ear of all teleost (bony) fishes and are normally composed of aragonite, though abnormal vaterite replacement is sometimes seen in the wild. We provide the first widespread evaluation of the prevalence of vaterite in otoliths, showing that farmed fish have levels of vaterite replacement over 10 times higher than wild fish, regardless of species. We confirm this observation with extensive sampling of wild and farmed Atlantic salmon in Norway, the world’s largest producer and verify that vateritic otoliths are common in farmed salmon worldwide. Using a mechanistic model of otolith oscillation in response to sound, we demonstrate that average levels of vaterite replacement result in a 28–50% loss of otolith functionality across most of a salmonid’s known hearing range and throughout its life cycle. The underlying cause(s) of vaterite formation remain unknown, but the prevalence of hearing impairment in farmed fish has important implications for animal welfare, the survival of escapees and their effects on wild populations and the efficacy of restocking programs based on captive-bred fish.