4.4 Article

Frequency of vateritic otoliths and potential consequences for marine survival in hatchery-reared Atlantic salmon

期刊

JOURNAL OF FISH BIOLOGY
卷 98, 期 5, 页码 1401-1409

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WILEY
DOI: 10.1111/jfb.14683

关键词

aragonite; crystalline otoliths; survival; vaterite

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Otoliths are important inner-ear structures for teleost fish, mainly composed of aragonite but sometimes vaterite. Abnormal otoliths can impact fish's inner-ear functions and may indicate environmental stress. The study found high frequency of vateritic otoliths in hatchery-reared Atlantic salmon, with potential negative effects on marine survival. There was also controversy regarding the influence of fast growth on abnormal otolith formation.
Otoliths are inner-ear structures of all teleost fish with functional importance for hearing and balance. The otoliths usually consist of aragonite, a polymorph of calcium carbonate, but may also take the form partly or entirely of vaterite, a different polymorph of calcium carbonate. Vateritic otoliths occur sporadically in wild fish, but with a higher frequency in hatchery-reared fish. Abnormal otoliths have direct consequences for the inner-ear functions of fish and may be a symptom of environmental stress. In this study, the authors assess the differences in the frequency of abnormal otoliths and degree of abnormality (% vaterite) for different groups of hatchery-reared Atlantic salmon (Salmo salar) smolt and adults. The groups differed in parental broodstock origin (number of generations in hatchery) and treatment temperature. Smolt from the same groups were also released to complete their ocean migration. The otoliths of the returning and recaptured adults were subsequently extracted to assess the difference in frequency and degree of abnormality between the adults and the smolt from corresponding groups. Return rate varied among groups (0.2%-2.6%). The frequency of vateritic otoliths was high (11.4%-64.4%) and differed among smolt groups. The lowest return rates corresponded with the highest frequency of abnormal otoliths for the groups, suggesting that abnormal otoliths may have negative consequences for marine survival. Furthermore, indications of an effect of fast growth on the formation of abnormal otoliths were found for only one of the experimental groups, and for none of the groups after correcting for Type 1 error. This contradicts previous reports, suggesting rapid growth as the main cause of abnormal otoliths. Adult return rates were generally low, but abnormal otoliths were common, with high coverage (% vaterite).

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