Abstract

AbstractAimUnderstanding the spatial and temporal variation in the distribution of migratory species is critical for management and conservation efforts. However, challenges in observing mobile marine species throughout their migratory pathways can impede the identification of critical habitat, linkages between these habitats and threat‐mitigation strategies. This study aimed to gain insight into the long‐term residency and movement patterns of the whale shark (Rhincodon typus) and to reveal important habitat in the context of R. typus usage of existing Marine Protected Areas (MPAs).LocationSouth‐eastern Indian Ocean.MethodsSatellite telemetry was used to remotely track the long‐term movements of 29 R. typus, and to quantify shark usage of the existing MPA network. From the tracking data and environmental predictors, nonlinear models were developed to predict suitable R. typus habitat throughout the south‐eastern Indian Ocean.ResultsThis study includes the first documented complete return migrations by R. typus to Ningaloo Marine Park, which was found to be an important area for R. typus all year‐round. We found that while existing MPAs along Australia's west coast do afford some protection to R. typus, telemetry‐based habitat models revealed large areas of suitable habitat not currently protected, particularly along the Western Australian coast, in the Timor Sea, and in Indonesian and international waters.Main conclusionsAnimal‐borne telemetric devices allowed the gathering of long‐term spatial information from the elusive and highly mobile R. typus, revealing the spatial scale of their migration in the south‐eastern Indian Ocean. Suitable habitat was predicted to occur inside conservation areas, but our findings indicate that the current MPA network may not sufficiently protect R. typus throughout the year. We suggest that telemetry‐based habitat models can be an important tool to inform conservation planning and spatial management efforts for migratory species.

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