Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales

The humpback whale population of New Caledonia appears to display a novel migratory pattern characterized by multiple directions, long migratory paths and frequent pauses over seamounts and other shallow geographical features. Using satellite-monitored radio tags, we tracked 34 whales for between 5...

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Main Authors: Claire Garrigue, Phillip J. Clapham, Ygor Geyer, Amy S. Kennedy, Alexandre N. Zerbini
Format: Article
Language:English
Published: The Royal Society 2015-01-01
Series:Royal Society Open Science
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.150489
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spelling doaj-b261b0559c3c429f988c657ddbcd947a2020-11-25T03:09:37ZengThe Royal SocietyRoyal Society Open Science2054-57032015-01-0121110.1098/rsos.150489150489Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whalesClaire GarriguePhillip J. ClaphamYgor GeyerAmy S. KennedyAlexandre N. ZerbiniThe humpback whale population of New Caledonia appears to display a novel migratory pattern characterized by multiple directions, long migratory paths and frequent pauses over seamounts and other shallow geographical features. Using satellite-monitored radio tags, we tracked 34 whales for between 5 and 110 days, travelling between 270 and 8540 km on their southward migration from a breeding ground in southern New Caledonia. Mean migration speed was 3.53±2.22 km h−1, while movements within the breeding ground averaged 2.01±1.63 km h−1. The tag data demonstrate that seamounts play an important role as offshore habitats for this species. Whales displayed an intensive use of oceanic seamounts both in the breeding season and on migration. Seamounts probably serve multiple and important roles as breeding locations, resting areas, navigational landmarks or even supplemental feeding grounds for this species, which can be viewed as a transient component of the seamount communities. Satellite telemetry suggests that seamounts represent an overlooked cryptic habitat for the species. The frequent use by humpback whales of such remote locations has important implications for conservation and management.https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.150489whaledistributioncryptic habitatsatellite trackingoceaniabreeding ground
collection DOAJ
language English
format Article
sources DOAJ
author Claire Garrigue
Phillip J. Clapham
Ygor Geyer
Amy S. Kennedy
Alexandre N. Zerbini
spellingShingle Claire Garrigue
Phillip J. Clapham
Ygor Geyer
Amy S. Kennedy
Alexandre N. Zerbini
Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
Royal Society Open Science
whale
distribution
cryptic habitat
satellite tracking
oceania
breeding ground
author_facet Claire Garrigue
Phillip J. Clapham
Ygor Geyer
Amy S. Kennedy
Alexandre N. Zerbini
author_sort Claire Garrigue
title Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
title_short Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
title_full Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
title_fullStr Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
title_full_unstemmed Satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered South Pacific humpback whales
title_sort satellite tracking reveals novel migratory patterns and the importance of seamounts for endangered south pacific humpback whales
publisher The Royal Society
series Royal Society Open Science
issn 2054-5703
publishDate 2015-01-01
description The humpback whale population of New Caledonia appears to display a novel migratory pattern characterized by multiple directions, long migratory paths and frequent pauses over seamounts and other shallow geographical features. Using satellite-monitored radio tags, we tracked 34 whales for between 5 and 110 days, travelling between 270 and 8540 km on their southward migration from a breeding ground in southern New Caledonia. Mean migration speed was 3.53±2.22 km h−1, while movements within the breeding ground averaged 2.01±1.63 km h−1. The tag data demonstrate that seamounts play an important role as offshore habitats for this species. Whales displayed an intensive use of oceanic seamounts both in the breeding season and on migration. Seamounts probably serve multiple and important roles as breeding locations, resting areas, navigational landmarks or even supplemental feeding grounds for this species, which can be viewed as a transient component of the seamount communities. Satellite telemetry suggests that seamounts represent an overlooked cryptic habitat for the species. The frequent use by humpback whales of such remote locations has important implications for conservation and management.
topic whale
distribution
cryptic habitat
satellite tracking
oceania
breeding ground
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.150489
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