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Influence of environmental variation on spatial distribution and habitat-use in a benthic foraging marine predator

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Version 3 2024-06-19, 05:54
Version 2 2024-06-03, 07:17
Version 1 2021-10-14, 08:05
journal contribution
posted on 2024-06-19, 05:54 authored by CN Speakman, AJ Hoskins, MA Hindell, DP Costa, JR Hartog, AJ Hobday, John ArnouldJohn Arnould
The highly dynamic nature of the marine environment can have a substantial influence on the foraging behaviour and spatial distribution of marine predators, particularly in pelagic marine systems. However, knowledge of the susceptibility of benthic marine predators to environmental variability is limited. This study investigated the influence of local-scale environmental conditions and large-scale climate indices on the spatial distribution and habitat use in the benthic foraging Australian fur seal ( Arctocephalus pusillus doriferus ; AUFS). Female AUFS provisioning pups were instrumented with GPS or ARGOS platform terminal transmitter tags during the austral winters of 2001–2019 at Kanowna Island, south-eastern Australia. Individuals were most susceptible to changes in the Southern Oscillation Index that measures the strength of the El Niño Southern Oscillation, with larger foraging ranges, greater distances travelled and more dispersed movement associated with 1-yr lagged La Niña-like conditions. Additionally, the total distance travelled was negatively correlated with the current year sea surface temperature and 1-yr lagged Indian Ocean Dipole, and positively correlated with 1-yr lagged chlorophyll- a concentration. These results suggest that environmental variation may influence the spatial distribution and availability of prey, even within benthic marine systems.

History

Journal

Royal Society Open Science

Volume

8

Article number

ARTN 211052

Pagination

1 - 14

Location

England

Open access

  • Yes

ISSN

2054-5703

eISSN

2054-5703

Language

English

Publication classification

C1 Refereed article in a scholarly journal

Issue

10

Publisher

ROYAL SOC