King penguins adjust their diving behaviour with age

Author:

Le Vaillant Maryline12,Wilson Rory P.3,Kato Akiko12,Saraux Claire12,Hanuise Nicolas124,Prud'Homme Onésime12,Le Maho Yvon12,Le Bohec Céline1256,Ropert-Coudert Yan12

Affiliation:

1. Université de Strasbourg, Institut Pluridisciplinaire Hubert Curien, 23 rue Becquerel, 67087 Strasbourg, France

2. CNRS, UMR-7178, 67037 Strasbourg Cedex, France

3. Biosciences, College of Science, Swansea University, Singleton Park, Swansea SA2 8PP, UK

4. CNRS, UPR-1934, 79360 Villiers en Bois, France

5. Centre for Ecological and Evolutionary Synthesis (CEES), Department of Biology, University of Oslo, PO Box 1066 Blindern, N-0316, Norway

6. LEA 647 ‘BioSensib’ CSM/CNRS, 8 quai Antoine 1er, MC 98000, Principality of Monaco

Abstract

SUMMARYIncreasing experience in long-lived species is fundamental to improving breeding success and ultimately individual fitness. Diving efficiency of marine animals is primarily determined by their physiological and mechanical characteristics. This efficiency may be apparent via examination of biomechanical performance (e.g. stroke frequency and amplitude, change in buoyancy or body angle, etc.), which itself may be modulated according to resource availability, particularly as a function of depth. We investigated how foraging and diving abilities vary with age in a long-lived seabird. During two breeding seasons, small accelerometers were deployed on young (5 year old) and older (8/9 year old) brooding king penguins (Aptenodytes patagonicus) at the Crozet Archipelago, Indian Ocean. We used partial dynamic body acceleration (PDBA) to quantify body movement during dive and estimate diving cost. During the initial part of the descent, older birds exerted more effort for a given speed but younger penguins worked harder in relation to performance at greater depths. Younger birds also worked harder per unit speed for virtually the whole of the ascent. We interpret these differences using a model that takes into account the upthrust and drag to which the birds are subjected during the dive. From this, we suggest that older birds inhale more at the surface but that an increase in the drag coefficient is the factor leading to the increased effort to swim at a given speed by the younger birds at greater depths. We propose that this higher drag may be the result of young birds adopting less hydrodynamic postures or less direct trajectories when swimming or even having a plumage in poorer condition.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference75 articles.

1. The comfort behaviour of Adélie and other penguins;Ainley;Behaviour,1974

2. Age-specific reproductive success in a long-lived bird: do older parents resist stress better?;Angelier;J. Anim. Ecol.,2007

3. Hydrodynamics of penguins – an experimental approach;Bannasch,1995

4. Hydrodynamic aspects of design and attachment of a back-mounted device in penguins;Bannasch;J. Exp. Biol.,1994

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