Condition and Mass Impact Oxygen Stores and Dive Duration in Adult Female Northern Elephant Seals

Published by and copyright of The Company of Biologists. The definitive version of this article is available at: http://jeb.biologists.org/content/213/4/585.full.pdf+html The range of foraging behaviors available to deep-diving, air-breathing marine vertebrates is constrained by their physiological...

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Bibliographic Details
Main Authors: Hassrick, J.L., Crocker, Daniel E., Teutschel, N.M., McDonald, B.I., Robinson, P.W., Simmons, S.E., Costa, D.P.
Format: Article in Journal/Newspaper
Language:English
Published: Journal of Experimental Biology 2010
Subjects:
age
Online Access:http://hdl.handle.net/10211.3/118321
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Summary:Published by and copyright of The Company of Biologists. The definitive version of this article is available at: http://jeb.biologists.org/content/213/4/585.full.pdf+html The range of foraging behaviors available to deep-diving, air-breathing marine vertebrates is constrained by their physiological capacity to breath-hold dive. We measured body oxygen stores (blood volume and muscle myoglobin) and diving behavior in adult female northern elephant seals, Mirounga angustirostris, to investigate age-related effects on diving performance. Blood volume averaged 74.4??17.0???liters in female elephant seals or 20.2??2.0% of body mass. Plasma volume averaged 32.2??7.8???liters or 8.7??0.7% of body mass. Absolute plasma volume and blood volume increased independently with mass and age. Hematocrit decreased weakly with mass but did not vary with age. Muscle myoglobin concentration, while higher than previously reported (7.4??0.7???g%), did not vary with mass or age. Pregnancy status did not influence blood volume. Mean dive duration, a proxy for physiological demand, increased as a function of how long seals had been at sea, followed by mass and hematocrit. Strong effects of female body mass (range, 218???600???kg) on dive duration, which were independent of oxygen stores, suggest that larger females had lower diving metabolic rates. A tendency for dives to exceed calculated aerobic limits occurred more frequently later in the at-sea migration. Our data suggest that individual physiological state variables and condition interact to determine breathhold ability and that both should be considered in life-history studies of foraging behavior This research was supported by the Tagging of Pacific Pelagics program with grants from the National Ocean Partnership Program (N00014-02-1-1012), the Office of Naval Research (N00014-00-1-0880, N00014-03-1-0651 and N00014- 08-1-1195), International Association of Oil and Gas Producers contract JIP2207- 23, the Moore, Packard, and Sloan Foundations. J.L.H. was supported by a National Science Foundation pre-doctoral fellowship.