2023
DOI: 10.21203/rs.3.rs-2689097/v1
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Otolith biogeochemistry reveals impact of extreme climate events on population connectivity of a highly migratory fish

Abstract: Climate change, particularly extreme climate events, is likely to alter the population connectivity in diverse taxa. While the population connectivity for highly migratory species is expected to be vulnerable to climate change, the complex migration patterns has made the measurement difficult and studies rare. However, otolith biogeochemistry provides the possibility to evaluate these climate-induced impacts. Japanese Spanish mackerel Scomberomorus niphonius is a highly migratory fish that is widely distribute… Show more

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