Empirical evidence for differential organ reductions during trans–oceanic bird flight
Open Access
- 22 January 2000
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 267 (1439) , 191-195
- https://doi.org/10.1098/rspb.2000.0986
Abstract
Since the early 1960s it has been held that migrating birds deposit and use only fat as fuel during migratory flight, with the non–fat portion of the body remaining homeostatic. Recent evidence from field studies has shown large changes in organ sizes in fuelling birds, and theory on fuel use suggests protein may be a necessary fuel during flight. However, an absence of information on the body condition of migrants before and after a long flight has hampered understanding of the dynamics of organs during sustained flight. We studied body condition in a medium–sized shorebird, the great knot (Calidris tenuirostris), before and after a flight of 5400 km from Australia to China during northward migration. Not only did these birds show the expected large reduction in fat content after migration, there was also a decrease in lean tissue mass, with significant decreases in seven organs. The reduction in functional components is reflected in a lowering of the basal metabolic rate by 46%. Recent flight models have tried to separate the ‘flexible’ part of the body from the constant portion. Our results suggest that apart from brains and lungs no organs are homeostatic during long–distance flight. Such organ reductions may be a crucial adaptation for long–distance flight in birds.Keywords
This publication has 14 references indexed in Scilit:
- Rapid Changes in the Size of Different Functional Organ and Muscle Groups during Refueling in a Long‐Distance Migrating ShorebirdPhysiological and Biochemical Zoology, 1999
- Phenotypic Organ Flexibility in Garden Warblers Sylvia borin during Long-Distance MigrationJournal of Avian Biology, 1998
- Fuel Supply and Metabolic Constraints in Migrating BirdsJournal of Avian Biology, 1998
- Phenotypic Flexibility during Migration: Optimization of Organ Size Contingent on the Risks and Rewards of Fueling and Flight?Journal of Avian Biology, 1998
- Changes in lean mass and in organs of nutrient assimilation in a long-distance passerine migrant at a springtime stopover site.Physiological Zoology, 1998
- Computer Simulation of Fat and Muscle Burn in Long-distance Bird MigrationJournal of Theoretical Biology, 1998
- Wingbeat Frequency and the Body Drag Anomaly: Wind-Tunnel Observations on a Thrush Nightingale (Luscinia Luscinia) And a Teal (Anas Crecca)Journal of Experimental Biology, 1996
- Interactions between Stomach Structure and Diet Choice in ShorebirdsThe Auk, 1993
- Energy metabolism and body size I. Is the 0.75 mass exponent of Kleiber's equation a statistical artifact?Respiration Physiology, 1982
- Homeostasis of the Nonfat Components of Migrating BirdsScience, 1964