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Published on: June 27, 2020
Flight performance of western sandpipers, Calidris mauri, remains uncompromised when mounting an acute phase immune
Silke Nebel1, Deborah M Buehler, Alexander MacMillan
1Department of Biology, Advanced Facility for Avian Research, University of Western Ontario, London, ON, Canada, N6A 5B7. snebel2@uwo.ca
Abstract:
Migratory birds have been implicated in the spread of some zoonotic diseases, but how well infected individuals can fly remains poorly understood. We used western sandpipers, Calidris mauri, to experimentally test whether flight is affected when long-distance migrants are mounting an immune response and whether migrants maintain immune defences during a flight in a wind tunnel. We measured five indicators of innate immunity in 'flown-healthy' birds (flying in a wind tunnel without mounting an immune response), 'flown-sick' birds (flying while mounting an acute phase response, which is part of induced innate immunity), and a non-flying control group ('not-flown'). Voluntary flight duration did not differ between flown-healthy and flown-sick birds, indicating that mounting an acute phase response to simulated infection did not hamper an individual's ability to fly for up to 3 h. However, in comparison to not-flown birds, bacterial killing ability of plasma was significantly reduced after flight in flown-sick birds. In flown-healthy birds, voluntary flight duration was positively correlated with bacterial killing ability and baseline haptoglobin concentration of the blood plasma measured 1-3 weeks before experimental flights, suggesting that high quality birds had strong immune systems and greater flight capacity. Our findings indicate that flight performance is not diminished by prior immune challenge, but that flight while mounting an acute phase response negatively affects other aspects of immune function. These findings have important implications for our understanding of the transmission of avian diseases, as they suggest that birds can still migrate while fighting an infection.
Insights
Migratory birds can fly long distances even when mounting an immune response. However, flying while sick reduces their immune defenses, impacting disease transmission during migration.
Area of Science:
- Avian biology
- Immunology
- Ecology
Background:
- Migratory birds are vectors for zoonotic diseases.
- The impact of immune response on avian flight capacity is poorly understood.
Purpose of the Study:
- To investigate if mounting an immune response affects flight performance in migratory birds.
- To determine if immune defenses are maintained during flight in a wind tunnel.
Main Methods:
- Western sandpipers (Calidris mauri) were used in a wind tunnel experiment.
- Three groups were tested: flown-healthy, flown-sick (mounting an acute phase response), and not-flown controls.
- Indicators of innate immunity and flight duration were measured.
Main Results:
- Flight duration was similar between flown-healthy and flown-sick birds (up to 3 hours).
- Bacterial killing ability of plasma was reduced in flown-sick birds compared to controls after flight.
- Higher flight duration correlated with better immune function (bacterial killing, haptoglobin) in healthy birds.
Conclusions:
- Flight performance is not impaired by an acute immune response.
- Flight while mounting an immune response negatively affects immune function, specifically bacterial killing ability.
- Migratory birds can potentially transmit diseases while migrating and fighting infection.
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